Level-armed shift, derived dryRunLevel, side-panel editor + manual q_out
Runtime (specificClass.js): - Replace direction-based hysteresis with level-armed _shiftArmed state. Arms when level rises past shiftLevel; disarms when level drops below startLevel. While armed, ramp foot moves to startLevel and ramp top to shiftLevel — both ends shift left, then saturate at 100 % up to maxLevel. - _scaleLevelToFlowPercent now takes (rampStartLevel, rampTopLevel) so the saturation point follows the shift state. - New setManualOutflow mirroring setManualInflow. Adapter (nodeClass.js): - Pipe enableShiftedRamp / shiftLevel through to control.levelbased. - New q_out topic handler. Editor (pumpingStation.html + new src/editor/ modules): - Split monolithic <script> into modules: index.js (helpers), basin-diagram.js, mode-preview.js, hover-couple.js, oneditprepare.js, oneditsave.js — served via /pumpingStation/editor/:file. - Mode preview redrawn per the SVG diagrams: OFF tier below 0 %, 0 % flat from start→inlet, ramp inlet→max, optional shifted-down curve start→shift with 100 % saturation past shift. - Mode preview gains zone bands (dryRun / safetyLow / safe / safetyHigh / overflow), level markers (dryRun derived, start, inlet, max, shift, overflow), validation ribbon that blocks save on bad ordering. - Auto-default shiftLevel to 0.9 × maxLevel on enable so the marker is always visible. - All level inputs moved to a side panel left of each diagram, color- coded to match line strokes; hover-couple highlights the paired SVG line on input focus / mouseover. - Removed UI for non-static parameters: minHeightBasedOn, pipelineLength, maxDischargeHead, staticHead, defaultFluid, maxInflowRate, temperatureReferenceDegC, timeleftToFullOrEmptyThresholdSeconds, inletPipeDiameter, outletPipeDiameter, minLevel (now derived = dryRunLevel). - foreignObject inputs in basin SVG removed (single source of truth in side panel). Dashboard example (examples/basic-dashboard.flow.json): - Add manual Q_OUT slider + q_out builder mirroring the existing q_in trio so the basin can be exercised end-to-end without a connected rotating-machine downstream. Tests (test/basic/specificClass.test.js): - Replace direction-shift test with two new cases covering shift-disabled hold-zone behaviour and shift-armed/disarmed transitions through shiftLevel and startLevel boundaries. 53/53 tests pass. Co-Authored-By: Claude Opus 4.7 (1M context) <noreply@anthropic.com>
This commit is contained in:
228
src/editor/mode-preview.js
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228
src/editor/mode-preview.js
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// PumpingStation editor — level-based mode preview SVG.
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// Draws zone bands, level markers, the up curve (inflowLevel→maxLevel) and
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// the optional shifted-down curve (startLevel→shiftLevel). Computes
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// validation issues and stashes them on window._psModeValidationIssues
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// for oneditsave to read.
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(function () {
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const ns = window.PSEditor = window.PSEditor || {};
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const fNum = (id) => ns.fNum(id);
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// Derive dryRunLevel the same way the basin diagram does.
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// dryRunLevel = outflowLevel × (1 + dryRunThresholdPercent/100).
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// Returns null if either input is missing.
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ns.deriveDryRunLevel = () => {
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const refLow = fNum('outflowLevel');
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const dryPct = fNum('dryRunThresholdPercent');
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if (refLow == null || dryPct == null) return null;
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return refLow * (1 + dryPct / 100);
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};
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ns.modePreview = {
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redraw() {
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const svg = document.getElementById('ps-levelbased-mode-diagram');
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if (!svg) return;
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const start = fNum('startLevel');
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const inlet = fNum('inflowLevel');
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const max = fNum('maxLevel');
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// dryRunLevel is derived from the basin's outflowLevel + dryRun%
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// (no separate input). Below dryRunLevel the runtime hard-stops;
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// we draw it as the leftmost vertical marker so the user sees
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// exactly where it lands.
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const dryRun = ns.deriveDryRunLevel();
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const overflow = fNum('overflowLevel');
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const shiftEnabled = !!document.getElementById('node-input-enableShiftedRamp')?.checked;
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const shiftRaw = fNum('shiftLevel');
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const shift = Number.isFinite(shiftRaw) && shiftRaw > 0 ? Math.min(shiftRaw, max ?? shiftRaw) : null;
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const curveType = document.getElementById('node-input-levelCurveType')?.value || 'linear';
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const factorRaw = parseFloat(document.getElementById('node-input-logCurveFactor')?.value);
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const factor = Number.isFinite(factorRaw) && factorRaw > 0 ? factorRaw : 9;
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// Plot window is FIXED relative to basin geometry so that moving any
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// single level slides only that line, not all the others. Lower bound
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// is the basin floor (0); upper bound is overflowLevel (or maxLevel
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// if overflow isn't set) plus a small margin.
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const upperRefs = [max, overflow].filter(Number.isFinite);
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const upperBase = upperRefs.length ? Math.max(...upperRefs) : 1;
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const pad = Math.max(upperBase * 0.05, 0.1);
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const levelMin = 0;
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const levelMax = upperBase + pad;
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// Plot rectangle (viewBox px).
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const x0 = 52, x1 = 390, y0 = 140, y1 = 24;
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const yOffPx = 160;
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const yOffPct = -((yOffPx - y0) / (y0 - y1)) * 100;
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const xFor = (level) => x0 + ((level - levelMin) / (levelMax - levelMin)) * (x1 - x0);
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const yForPct = (pct) => y0 - (pct / 100) * (y0 - y1);
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const scale = (x) => {
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const clamped = Math.max(0, Math.min(1, x));
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if (curveType === 'log') return Math.log1p(factor * clamped) / Math.log1p(factor);
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return clamped;
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};
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// Path with three flat regions and a ramp:
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// [levelMin..startX] OFF (pump off; below startLevel)
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// [startX..footX] 0 % (system armed but not yet ramping)
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// [footX..topX] ramp (linear or log scaled 0..100 %)
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// [topX..levelMax] 100 % (saturated)
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// Up curve: startX=startLevel, footX=inflowLevel, topX=maxLevel.
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// Shifted-down: startX=footX=startLevel, topX=shiftLevel.
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const buildPath = (startX, footX, topX) => {
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if (![startX, footX, topX].every(Number.isFinite) || topX <= footX) return '';
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const pts = [];
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pts.push(`${xFor(levelMin)},${yForPct(yOffPct)}`);
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pts.push(`${xFor(startX)},${yForPct(yOffPct)}`);
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pts.push(`${xFor(startX)},${yForPct(0)}`);
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if (footX > startX) pts.push(`${xFor(footX)},${yForPct(0)}`);
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for (let i = 0; i <= 24; i++) {
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const t = i / 24;
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const level = footX + t * (topX - footX);
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pts.push(`${xFor(level)},${yForPct(scale(t) * 100)}`);
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}
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pts.push(`${xFor(levelMax)},${yForPct(100)}`);
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return pts.join(' ');
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};
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const up = document.getElementById('ps-mode-curve-up');
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const down = document.getElementById('ps-mode-curve-down');
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const downLabel = document.getElementById('ps-mode-curve-down-label');
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if (up) up.setAttribute('points', buildPath(start, inlet, max));
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if (down) {
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if (shiftEnabled) {
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const shiftedTop = Number.isFinite(shift) && shift > start ? shift : max;
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down.setAttribute('points', buildPath(start, start, shiftedTop));
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down.style.display = '';
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if (downLabel) downLabel.style.display = '';
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} else {
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down.setAttribute('points', '');
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down.style.display = 'none';
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if (downLabel) downLabel.style.display = 'none';
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}
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}
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// Vertical level markers + axis labels.
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[
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['dryRunLevel', dryRun],
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['startLevel', start],
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['inflowLevel', inlet],
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['maxLevel', max],
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['overflowLevel', overflow],
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].forEach(([id, level]) => {
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const line = document.getElementById(`ps-mode-line-${id}`);
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const label = document.getElementById(`ps-mode-label-${id}`);
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if (!line || !label) return;
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if (!Number.isFinite(level)) {
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line.style.display = 'none';
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label.style.display = 'none';
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return;
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}
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const x = xFor(level);
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line.style.display = '';
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label.style.display = '';
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line.setAttribute('x1', x); line.setAttribute('x2', x);
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label.setAttribute('x', x);
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});
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// Background zone bands.
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const plotL = xFor(levelMin);
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const plotR = xFor(levelMax);
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const setBand = (id, a, b) => {
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const r = document.getElementById(id);
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if (!r) return;
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if (!Number.isFinite(a) || !Number.isFinite(b) || b <= a) {
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r.setAttribute('x', 0); r.setAttribute('width', 0);
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return;
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}
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r.setAttribute('x', a);
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r.setAttribute('width', b - a);
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};
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const xMin = Number.isFinite(dryRun) ? xFor(dryRun) : plotL;
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const xStart = Number.isFinite(start) ? xFor(start) : xMin;
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const xMax = Number.isFinite(max) ? xFor(max) : plotR;
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const xOvf = Number.isFinite(overflow) ? xFor(overflow) : xMax;
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setBand('ps-zone-dryRun', plotL, xMin);
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setBand('ps-zone-safetyLow', xMin, xStart);
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setBand('ps-zone-safe', xStart, xMax);
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setBand('ps-zone-safetyHigh', xMax, xOvf);
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setBand('ps-zone-overflow', xOvf, plotR);
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// Shift level marker.
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const shiftLine = document.getElementById('ps-mode-line-shiftLevel');
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const shiftLabel = document.getElementById('ps-mode-label-shiftLevel');
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if (shiftLine && shiftLabel) {
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if (shiftEnabled && Number.isFinite(shift)) {
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const x = xFor(shift);
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shiftLine.setAttribute('x1', x); shiftLine.setAttribute('x2', x);
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shiftLabel.setAttribute('x', x);
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shiftLine.style.display = '';
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shiftLabel.style.display = '';
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} else {
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shiftLine.style.display = 'none';
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shiftLabel.style.display = 'none';
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}
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}
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// Title + row visibility.
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const curveLabel = document.getElementById('ps-mode-curve-label');
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if (curveLabel) curveLabel.textContent = curveType === 'log' ? 'log curve: fast early response' : 'linear curve';
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const shiftRow = document.getElementById('ps-shiftLevel-row');
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if (shiftRow) shiftRow.style.display = shiftEnabled ? '' : 'none';
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const logRow = document.getElementById('ps-log-factor-row');
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if (logRow) logRow.style.display = curveType === 'log' ? '' : 'none';
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// Auto-default shiftLevel when shift is enabled and current value
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// is missing/out-of-range. Visible default avoids a hidden ramp.
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const shiftInput = document.getElementById('node-input-shiftLevel');
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if (shiftEnabled && shiftInput && Number.isFinite(max)) {
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const cur = parseFloat(shiftInput.value);
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if (!Number.isFinite(cur) || cur <= 0 || cur >= max) {
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shiftInput.value = (max * 0.9).toFixed(2);
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}
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}
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// Validation: ordering constraints.
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const issues = [];
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if (Number.isFinite(dryRun) && Number.isFinite(start) && dryRun >= start)
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issues.push('dryRunLevel (derived) must be < startLevel — increase startLevel or lower dryRun%');
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if (Number.isFinite(start) && Number.isFinite(inlet) && start >= inlet)
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issues.push('startLevel must be < inflowLevel (set in basin above)');
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if (Number.isFinite(inlet) && Number.isFinite(max) && inlet >= max)
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issues.push('inflowLevel must be < maxLevel');
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if (Number.isFinite(max) && Number.isFinite(overflow) && max > overflow)
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issues.push('maxLevel must be ≤ overflowLevel');
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if (shiftEnabled) {
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const shiftVal = Number(shiftInput?.value);
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if (Number.isFinite(shiftVal)) {
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if (Number.isFinite(start) && shiftVal <= start)
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issues.push('shiftLevel must be > startLevel');
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if (Number.isFinite(max) && shiftVal > max)
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issues.push('shiftLevel must be ≤ maxLevel');
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} else {
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issues.push('shiftLevel is required when shifted ramp is enabled');
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}
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}
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const warnBox = document.getElementById('ps-mode-validation');
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if (warnBox) {
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if (issues.length) {
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warnBox.innerHTML = '⚠ Fix before deploy:<ul style="margin:4px 0 0 18px;padding:0;">'
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+ issues.map((i) => `<li>${i}</li>`).join('') + '</ul>';
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warnBox.style.display = '';
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} else {
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warnBox.style.display = 'none';
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}
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}
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window._psModeValidationIssues = issues;
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// Read-only readouts in the side panel — number only; the row's
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// .ps-unit span already shows "m".
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const fmt = (v) => Number.isFinite(v) ? v.toFixed(2) : '—';
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const setText = (id, val) => {
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const el = document.getElementById(id);
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if (el) el.textContent = fmt(val);
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};
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setText('ps-mode-readout-dryRun', dryRun);
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setText('ps-mode-readout-inflow', inlet);
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setText('ps-mode-readout-overflow', overflow);
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},
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};
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})();
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