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// Speciation Bench — germplasm analytics over the session catalog.
const state = {
    variables: [],
    records: [],
    facetFilters: { germplasmType: new Set(), budFamily: new Set(), generation: new Set() },
    pcBrush: {},          // key -> [lo, hi] in data units
    sort: { key: 'germplasmName', dir: 1 },
    predictCloud: null,   // bud rgb[] overlay on the wheel
};

const FACET_GROUPS = [
    ['germplasmType', 'Type'],
    ['budFamily', 'Bud Family'],
    ['generation', 'Generation'],
];

function rgb2hsv(r, g, b) {
    r /= 255; g /= 255; b /= 255;
    const mx = Math.max(r, g, b), mn = Math.min(r, g, b), d = mx - mn;
    let h = 0;
    if (d) {
        if (mx === r) h = ((g - b) / d) % 6;
        else if (mx === g) h = (b - r) / d + 2;
        else h = (r - g) / d + 4;
        h *= 60; if (h < 0) h += 360;
    }
    return [h, mx === 0 ? 0 : d / mx, mx];
}
const css = (rgb) => `rgb(${rgb.join(',')})`;

async function load() {
    const res = await fetch('/api/lab/germplasm?t=' + Date.now());
    const data = await res.json();
    state.variables = data.variables;
    state.records = data.records;
    document.getElementById('count-badge').textContent = `${data.count} accessions`;
    renderFacets(data.facets);
    renderPredictControls();
    renderAll();
}

function filtered() {
    return state.records.filter(r => {
        for (const [key] of FACET_GROUPS) {
            const set = state.facetFilters[key];
            if (set.size && !set.has(String(r[key]))) return false;
        }
        for (const [key, ext] of Object.entries(state.pcBrush)) {
            if (r[key] < ext[0] || r[key] > ext[1]) return false;
        }
        return true;
    });
}

function renderAll() {
    const rows = filtered();
    renderGrid(rows);
    renderParallel(rows);
    renderWheel(rows);
    // reflect active state on facet chips
    document.querySelectorAll('.chip').forEach(ch => {
        ch.classList.toggle('active', state.facetFilters[ch.dataset.group]?.has(ch.dataset.value));
    });
}

/* ---------- Facets ---------- */
function renderFacets(facets) {
    const rail = document.getElementById('facet-rail');
    rail.innerHTML = '';
    FACET_GROUPS.forEach(([key, label]) => {
        const counts = facets[key] || {};
        const grp = document.createElement('div');
        grp.className = 'facet-group';
        grp.innerHTML = `<div class="facet-title">${label}</div>`;
        Object.entries(counts).forEach(([val, n]) => {
            const chip = document.createElement('span');
            chip.className = 'chip';
            chip.dataset.group = key; chip.dataset.value = val;
            const sw = key === 'budFamily' ? `<span class="sw" style="background:${val}"></span>` : '';
            chip.innerHTML = `${sw}${val} <span class="c">${n}</span>`;
            chip.onclick = () => {
                const set = state.facetFilters[key];
                set.has(val) ? set.delete(val) : set.add(val);
                renderAll();
            };
            grp.appendChild(chip);
        });
        rail.appendChild(grp);
    });
}

/* ---------- Grid ---------- */
const COLS = [
    ['germplasmName', 'Strain'], ['germplasmType', 'Type'], ['generation', 'Gen'],
    ['THC', 'THC'], ['CBD', 'CBD'], ['Yield', 'Yield'], ['GrowTime', 'Days'],
    ['BudHue', 'Bud'], ['LeafHue', 'Leaf'], ['Stability', 'Stab'], ['pedigree', 'Pedigree'],
];
function renderGrid(rows) {
    const sorted = [...rows].sort((a, b) => {
        const k = state.sort.key, va = a[k], vb = b[k];
        return (va < vb ? -1 : va > vb ? 1 : 0) * state.sort.dir;
    });
    const head = COLS.map(([k, l]) =>
        `<th data-k="${k}">${l}${state.sort.key === k ? (state.sort.dir > 0 ? ' ▲' : ' ▼') : ''}</th>`).join('');
    const body = sorted.map(r => `
        <tr>
            <td style="color:${css(r.budColor)}">${r.germplasmName}</td>
            <td>${r.germplasmType}</td>
            <td><span class="gen-pill">F${r.generation}</span></td>
            <td>${r.THC}</td><td>${r.CBD}</td><td>${r.Yield}</td><td>${r.GrowTime}</td>
            <td><span class="sw-cell" style="background:${css(r.budColor)}"></span> ${r.BudHue}°</td>
            <td><span class="sw-cell" style="background:${css(r.leafColor)}"></span> ${r.LeafHue}°</td>
            <td>${r.Stability}</td>
            <td style="color:var(--text-muted)">${r.pedigree}</td>
        </tr>`).join('');
    document.getElementById('grid-wrap').innerHTML =
        `<table class="germ"><thead><tr>${head}</tr></thead><tbody>${body}</tbody></table>`;
    document.querySelectorAll('table.germ th').forEach(th => {
        th.onclick = () => {
            const k = th.dataset.k;
            if (state.sort.key === k) state.sort.dir *= -1;
            else state.sort = { key: k, dir: 1 };
            renderGrid(filtered());
        };
    });
}

/* ---------- Parallel coordinates ---------- */
function renderParallel(rows) {
    const host = document.getElementById('parallel-coords');
    host.innerHTML = '';
    const dims = state.variables;
    const W = host.clientWidth || 700, H = host.clientHeight || 230;
    const m = { top: 22, right: 24, bottom: 18, left: 24 };
    const svg = d3.select(host).append('svg').attr('width', W).attr('height', H);
    const x = d3.scalePoint().domain(dims.map(d => d.key)).range([m.left, W - m.right]);
    const y = {};
    dims.forEach(d => { y[d.key] = d3.scaleLinear().domain([d.min, d.max]).range([H - m.bottom, m.top]); });

    const line = d3.line();
    const path = r => line(dims.map(d => [x(d.key), y[d.key](r[r === null ? 0 : d.key])]));
    const ids = new Set(rows.map(r => r.germplasmDbId));

    svg.append('g').selectAll('path').data(state.records).join('path')
        .attr('class', r => 'pc-line' + (ids.has(r.germplasmDbId) ? '' : ' dim'))
        .attr('stroke', r => css(r.budColor))
        .attr('d', r => line(dims.map(d => [x(d.key), y[d.key](r[d.key])])));

    const axes = svg.selectAll('.pc-axis').data(dims).join('g')
        .attr('class', 'pc-axis').attr('transform', d => `translate(${x(d.key)},0)`);
    axes.each(function (d) {
        d3.select(this).call(d3.axisLeft(y[d.key]).ticks(4).tickFormat(d3.format('~s')));
    });
    axes.append('text').attr('class', 'pc-title').attr('y', m.top - 8)
        .attr('text-anchor', 'middle').text(d => d.label);

    // brushing per axis
    axes.append('g').attr('class', 'brush').each(function (d) {
        d3.select(this).call(
            d3.brushY()
                .extent([[-9, m.top], [9, H - m.bottom]])
                .on('brush end', (ev) => {
                    if (ev.selection) {
                        const [hi, lo] = ev.selection.map(y[d.key].invert);
                        state.pcBrush[d.key] = [lo, hi];
                    } else {
                        delete state.pcBrush[d.key];
                    }
                    const rs = filtered();
                    renderGrid(rs); renderWheel(rs);
                    const idset = new Set(rs.map(r => r.germplasmDbId));
                    svg.selectAll('.pc-line').classed('dim', r => !idset.has(r.germplasmDbId));
                })
        );
    });
}

/* ---------- HSV color gamut wheel ---------- */
function renderWheel(rows) {
    const host = document.getElementById('color-wheel');
    host.innerHTML = '';
    const S = Math.min(host.clientWidth || 280, 280);
    const R = S / 2 - 16, cx = S / 2, cy = S / 2;
    const svg = d3.select(host).append('svg').attr('width', S).attr('height', S);
    // hue ring backdrop
    const ring = svg.append('g');
    for (let a = 0; a < 360; a += 6) {
        ring.append('path')
            .attr('d', d3.arc()({ innerRadius: R - 6, outerRadius: R, startAngle: a * Math.PI / 180, endAngle: (a + 6) * Math.PI / 180 }))
            .attr('transform', `translate(${cx},${cy})`)
            .attr('fill', d3.hsl(a, 0.9, 0.5).toString()).attr('opacity', 0.5);
    }
    svg.append('circle').attr('cx', cx).attr('cy', cy).attr('r', R).attr('fill', 'none').attr('stroke', 'rgba(255,255,255,0.08)');
    const ids = new Set(rows.map(r => r.germplasmDbId));
    const place = (rgb) => {
        const [h, s] = rgb2hsv(...rgb), rad = s * (R - 10), ang = (h - 90) * Math.PI / 180;
        return [cx + rad * Math.cos(ang), cy + rad * Math.sin(ang)];
    };
    // predicted progeny cloud (faint)
    if (state.predictCloud) {
        svg.append('g').selectAll('circle').data(state.predictCloud).join('circle')
            .attr('cx', d => place(d)[0]).attr('cy', d => place(d)[1]).attr('r', 2)
            .attr('fill', d => css(d)).attr('opacity', 0.35);
    }
    svg.append('g').selectAll('circle').data(state.records).join('circle')
        .attr('cx', r => place(r.budColor)[0]).attr('cy', r => place(r.budColor)[1])
        .attr('r', r => ids.has(r.germplasmDbId) ? 6 : 3)
        .attr('fill', r => css(r.budColor))
        .attr('stroke', r => ids.has(r.germplasmDbId) ? '#fff' : 'none').attr('stroke-width', 1)
        .attr('opacity', r => ids.has(r.germplasmDbId) ? 1 : 0.25)
        .append('title').text(r => `${r.germplasmName} · bud ${r.BudHue}°`);
}

/* ---------- Cross predictor ---------- */
function renderPredictControls() {
    const opts = state.records.map(r => `<option value="${r.germplasmDbId}">${r.germplasmName} (F${r.generation})</option>`).join('');
    document.getElementById('pred-a').innerHTML = opts;
    document.getElementById('pred-b').innerHTML = opts;
    if (state.records[1]) document.getElementById('pred-b').selectedIndex = 1;
}

async function runPredict() {
    const a = document.getElementById('pred-a').value, b = document.getElementById('pred-b').value;
    const res = await fetch('/api/lab/predict-cross', {
        method: 'POST', headers: { 'Content-Type': 'application/json' },
        body: JSON.stringify({ parent1_id: a, parent2_id: b, n: 300 }),
    });
    if (!res.ok) return;
    const d = await res.json();
    state.predictCloud = d.budCloud;
    renderWheel(filtered());
    const out = document.getElementById('predict-output');
    out.innerHTML = `<div class="hist-label" style="margin-bottom:8px">${d.parents[0]} × ${d.parents[1]} · n=${d.n}</div>`;
    ['THC', 'CBD', 'Yield', 'GrowTime'].forEach(k => out.appendChild(histogram(k, d[k])));
}

function histogram(key, s) {
    const wrap = document.createElement('div');
    wrap.className = 'hist-row';
    wrap.innerHTML = `<div class="hist-label">${key} <span>μ <b>${s.mean}</b> · ${s.min}${s.max}</span></div>`;
    const W = 290, H = 42;
    const svg = d3.select(wrap).append('svg').attr('width', '100%').attr('viewBox', `0 0 ${W} ${H}`);
    const x = d3.scaleLinear().domain([s.min, s.max === s.min ? s.min + 1 : s.max]).range([0, W]);
    const bins = d3.bin().domain(x.domain()).thresholds(16)(s.values);
    const y = d3.scaleLinear().domain([0, d3.max(bins, b => b.length) || 1]).range([H, 2]);
    svg.selectAll('rect').data(bins).join('rect')
        .attr('x', b => x(b.x0) + 0.5).attr('width', b => Math.max(1, x(b.x1) - x(b.x0) - 1))
        .attr('y', b => y(b.length)).attr('height', b => H - y(b.length))
        .attr('fill', 'var(--accent-lime)').attr('opacity', 0.7);
    return wrap;
}

/* ---------- wiring ---------- */
document.getElementById('btn-refresh').onclick = load;
document.getElementById('btn-predict').onclick = runPredict;
document.getElementById('btn-clear-filters').onclick = () => {
    FACET_GROUPS.forEach(([k]) => state.facetFilters[k].clear());
    state.pcBrush = {};
    renderAll();
};
document.getElementById('btn-newick').onclick = async () => {
    const txt = await (await fetch('/api/lab/newick')).text();
    const blob = new Blob([txt], { type: 'text/plain' });
    const a = document.createElement('a');
    a.href = URL.createObjectURL(blob); a.download = 'weedsim_pedigree.nwk'; a.click();
};
window.addEventListener('resize', () => renderAll());
load();