Index under- shooting.
Fix for arc 1D to 2D mapping. UI segment 2D mapping fix. Watchdog reposition & flicker reduction.
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e14c5bbd25
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fb6dfcd3fc
@ -150,7 +150,7 @@ uint16_t IRAM_ATTR Segment::XY(uint16_t x, uint16_t y) {
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void IRAM_ATTR Segment::setPixelColorXY(int x, int y, uint32_t col)
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void IRAM_ATTR Segment::setPixelColorXY(int x, int y, uint32_t col)
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{
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{
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if (!strip.isMatrix) return; // not a matrix set-up
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if (!strip.isMatrix) return; // not a matrix set-up
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if (x >= virtualWidth() || y >= virtualHeight()) return; // if pixel would fall out of virtual segment just exit
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if (x >= virtualWidth() || y >= virtualHeight() || x<0 || y<0) return; // if pixel would fall out of virtual segment just exit
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if (leds) leds[XY(x,y)] = col;
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if (leds) leds[XY(x,y)] = col;
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@ -445,8 +445,8 @@ void IRAM_ATTR Segment::setPixelColor(int i, uint32_t col)
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if (i==0)
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if (i==0)
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setPixelColorXY(0, 0, col);
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setPixelColorXY(0, 0, col);
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else {
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else {
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float step = HALF_PI / (2*i+1); // sqrtf((float)max(vH,vW))*i+1
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float step = HALF_PI / (2*i);
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for (float rad = 0.0f; rad <= HALF_PI; rad += step) {
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for (float rad = 0.0f; rad <= HALF_PI+step/2; rad += step) {
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// may want to try float version as well (with or without antialiasing)
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// may want to try float version as well (with or without antialiasing)
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int x = roundf(sin_t(rad) * i);
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int x = roundf(sin_t(rad) * i);
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int y = roundf(cos_t(rad) * i);
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int y = roundf(cos_t(rad) * i);
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@ -469,7 +469,7 @@ void IRAM_ATTR Segment::setPixelColor(int i, uint32_t col)
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}
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}
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#endif
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#endif
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if (i >= virtualLength()) return; // if pixel would fall out of segment just exit
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if (i >= virtualLength() || i<0) return; // if pixel would fall out of segment just exit
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if (leds) leds[i] = col;
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if (leds) leds[i] = col;
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uint16_t len = length();
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uint16_t len = length();
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@ -701,6 +701,10 @@ function populateSegments(s)
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<div class="sliderdisplay"></div>
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<div class="sliderdisplay"></div>
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</div>
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</div>
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</div>`;
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</div>`;
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let staX = inst.start;
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let stoX = inst.stop;
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let staY = inst.startY;
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let stoY = inst.stopY;
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let rvXck = `<label class="check revchkl">Reverse ${isM?'':'direction'}<input type="checkbox" id="seg${i}rev" onchange="setRev(${i})" ${inst.rev?"checked":""}><span class="checkmark"></span></label>`;
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let rvXck = `<label class="check revchkl">Reverse ${isM?'':'direction'}<input type="checkbox" id="seg${i}rev" onchange="setRev(${i})" ${inst.rev?"checked":""}><span class="checkmark"></span></label>`;
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let miXck = `<label class="check revchkl">Mirror<input type="checkbox" id="seg${i}mi" onchange="setMi(${i})" ${inst.mi?"checked":""}><span class="checkmark"></span></label>`;
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let miXck = `<label class="check revchkl">Mirror<input type="checkbox" id="seg${i}mi" onchange="setMi(${i})" ${inst.mi?"checked":""}><span class="checkmark"></span></label>`;
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let rvYck = "", miYck ="";
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let rvYck = "", miYck ="";
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@ -745,14 +749,14 @@ function populateSegments(s)
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<td>${isM?'':'Offset'}</td>
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<td>${isM?'':'Offset'}</td>
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</tr>
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</tr>
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<tr>
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<tr>
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<td><input class="noslide segn" id="seg${i}s" type="number" min="0" max="${(isM?mw:ledCount)-1}" value="${inst.start}" oninput="updateLen(${i})" onkeydown="segEnter(${i})"></td>
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<td><input class="noslide segn" id="seg${i}s" type="number" min="0" max="${(isM?mw:ledCount)-1}" value="${staX}" oninput="updateLen(${i})" onkeydown="segEnter(${i})"></td>
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<td><input class="noslide segn" id="seg${i}e" type="number" min="0" max="${(isM?mw:ledCount)-(cfg.comp.seglen?inst.start:0)}" value="${inst.stop-(cfg.comp.seglen?inst.start:0)}" oninput="updateLen(${i})" onkeydown="segEnter(${i})"></td>
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<td><input class="noslide segn" id="seg${i}e" type="number" min="0" max="${(isM?mw:ledCount)-(cfg.comp.seglen?staX:0)}" value="${stoX-(cfg.comp.seglen?staX:0)}" oninput="updateLen(${i})" onkeydown="segEnter(${i})"></td>
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<td style="text-align:revert;">${isM?miXck+'<br>'+rvXck:''}<input class="noslide segn ${isM?'hide':''}" id="seg${i}of" type="number" value="${inst.of}" oninput="updateLen(${i})"></td>
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<td style="text-align:revert;">${isM?miXck+'<br>'+rvXck:''}<input class="noslide segn ${isM?'hide':''}" id="seg${i}of" type="number" value="${inst.of}" oninput="updateLen(${i})"></td>
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</tr>
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</tr>
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${isM ? '<tr><td>Start Y</td><td>'+(cfg.comp.seglen?'Height':'Stop Y')+'</td><td></td></tr>'+
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${isM ? '<tr><td>Start Y</td><td>'+(cfg.comp.seglen?'Height':'Stop Y')+'</td><td></td></tr>'+
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'<tr>'+
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'<tr>'+
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'<td><input class="noslide segn" id="seg'+i+'sY" type="number" min="0" max="'+(mh-1)+'" value="'+inst.startY+'" oninput="updateLen('+i+')" onkeydown="segEnter('+i+')"></td>'+
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'<td><input class="noslide segn" id="seg'+i+'sY" type="number" min="0" max="'+(mh-1)+'" value="'+staY+'" oninput="updateLen('+i+')" onkeydown="segEnter('+i+')"></td>'+
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'<td><input class="noslide segn" id="seg'+i+'eY" type="number" min="0" max="'+(mh-(cfg.comp.seglen?inst.startY:0))+'" value="'+(inst.stopY-(cfg.comp.seglen?inst.startY:0))+'" oninput="updateLen('+i+')" onkeydown="segEnter('+i+')"></td>'+
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'<td><input class="noslide segn" id="seg'+i+'eY" type="number" min="0" max="'+(mh-(cfg.comp.seglen?staY:0))+'" value="'+(stoY-(cfg.comp.seglen?staY:0))+'" oninput="updateLen('+i+')" onkeydown="segEnter('+i+')"></td>'+
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'<td style="text-align:revert;">'+miYck+'<br>'+rvYck+'</td>'+
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'<td style="text-align:revert;">'+miYck+'<br>'+rvYck+'</td>'+
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'</tr>':''}
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'</tr>':''}
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<tr>
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<tr>
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@ -768,7 +772,7 @@ function populateSegments(s)
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</table>
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</table>
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<div class="h bp" id="seg${i}len"></div>
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<div class="h bp" id="seg${i}len"></div>
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${!isM?rvXck:''}
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${!isM?rvXck:''}
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${isM?map2D:''}
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${isM&&stoY-staY>1&&stoX-staX>1?map2D:''}
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${s.AudioReactive && s.AudioReactive.on ? "" : sndSim}
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${s.AudioReactive && s.AudioReactive.on ? "" : sndSim}
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<label class="check revchkl">
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<label class="check revchkl">
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${isM?'Transpose':'Mirror effect'}
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${isM?'Transpose':'Mirror effect'}
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@ -1031,14 +1035,16 @@ function updateLen(s)
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var stop = parseInt(gId(`seg${s}e`).value);
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var stop = parseInt(gId(`seg${s}e`).value);
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var len = stop - (cfg.comp.seglen?0:start);
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var len = stop - (cfg.comp.seglen?0:start);
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if (isM) {
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if (isM) {
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start = parseInt(gId(`seg${s}sY`).value);
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let startY = parseInt(gId(`seg${s}sY`).value);
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stop = parseInt(gId(`seg${s}eY`).value);
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let stopY = parseInt(gId(`seg${s}eY`).value);
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len *= (stop-(cfg.comp.seglen?0:start));
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len *= (stopY-(cfg.comp.seglen?0:startY));
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let sE = gId('fxlist').querySelector(`.lstI[data-id="${selectedFx}"]`);
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if (stop-start>1 && stopY-startY>1) {
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if (sE) {
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let sE = gId('fxlist').querySelector(`.lstI[data-id="${selectedFx}"]`);
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let sN = sE.querySelector(".lstIname").innerText;
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if (sE) {
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let seg = gId(`seg${s}map2D`);
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let sN = sE.querySelector(".lstIname").innerText;
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if (stop-start>1 && sN.indexOf("\u25A6")<0) seg.classList.remove("hide"); else seg.classList.add("hide");
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let seg = gId(`seg${s}map2D`);
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if (seg && sN.indexOf("\u25A6")<0) seg.classList.remove("hide"); else seg.classList.add("hide");
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}
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}
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}
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}
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}
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var out = "(delete)";
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var out = "(delete)";
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3532
wled00/html_ui.h
3532
wled00/html_ui.h
File diff suppressed because it is too large
Load Diff
@ -219,6 +219,7 @@ void WLED::loop()
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#if WLED_WATCHDOG_TIMEOUT > 0
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#if WLED_WATCHDOG_TIMEOUT > 0
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// we finished our mainloop, reset the watchdog timer
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// we finished our mainloop, reset the watchdog timer
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if (!strip.isUpdating())
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#ifdef ARDUINO_ARCH_ESP32
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#ifdef ARDUINO_ARCH_ESP32
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esp_task_wdt_reset();
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esp_task_wdt_reset();
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#else
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#else
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@ -280,8 +281,6 @@ void WLED::setup()
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DEBUG_PRINT(F("heap "));
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DEBUG_PRINT(F("heap "));
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DEBUG_PRINTLN(ESP.getFreeHeap());
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DEBUG_PRINTLN(ESP.getFreeHeap());
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enableWatchdog();
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#if defined(ARDUINO_ARCH_ESP32) && defined(WLED_USE_PSRAM)
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#if defined(ARDUINO_ARCH_ESP32) && defined(WLED_USE_PSRAM)
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if (psramFound()) {
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if (psramFound()) {
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// GPIO16/GPIO17 reserved for SPI RAM
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// GPIO16/GPIO17 reserved for SPI RAM
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@ -406,6 +405,8 @@ void WLED::setup()
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// HTTP server page init
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// HTTP server page init
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initServer();
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initServer();
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enableWatchdog();
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#if defined(ARDUINO_ARCH_ESP32) && defined(WLED_DISABLE_BROWNOUT_DET)
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#if defined(ARDUINO_ARCH_ESP32) && defined(WLED_DISABLE_BROWNOUT_DET)
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WRITE_PERI_REG(RTC_CNTL_BROWN_OUT_REG, 1); //enable brownout detector
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WRITE_PERI_REG(RTC_CNTL_BROWN_OUT_REG, 1); //enable brownout detector
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#endif
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#endif
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