update and add number theory page

This commit is contained in:
2026-06-28 22:13:12 -07:00
parent adb768db04
commit 2404e24e1e
8 changed files with 988 additions and 33 deletions
+12 -2
View File
@@ -20,7 +20,7 @@ const { ensureEnochianSection } = window.EnochianSectionUi || {};
const { ensureCalendarSection } = window.CalendarSectionUi || {};
const { ensureHolidaySection } = window.HolidaySectionUi || {};
const { ensureNatalPanel } = window.TarotNatalUi || {};
const { ensureNumbersSection, selectNumberEntry, normalizeNumberValue } = window.TarotNumbersUi || {};
const { ensureNumbersSection, selectNumberEntry, normalizeNumberValue, showBrowseView, showTheoryView } = window.TarotNumbersUi || {};
const tarotSpreadUi = window.TarotSpreadUi || {};
const settingsUi = window.TarotSettingsUi || {};
const chromeUi = window.TarotChromeUi || {};
@@ -93,6 +93,8 @@ const openAlphabetWordEl = document.getElementById("open-alphabet-word");
const openAlphabetLettersEl = document.getElementById("open-alphabet-letters");
const openAlphabetTextEl = document.getElementById("open-alphabet-text");
const openNumbersEl = document.getElementById("open-numbers");
const openNumbersBrowseEl = document.getElementById("open-numbers-browse");
const openNumbersTheoryEl = document.getElementById("open-numbers-theory");
const openZodiacEl = document.getElementById("open-zodiac");
const openNatalEl = document.getElementById("open-natal");
const openQuizEl = document.getElementById("open-quiz");
@@ -512,7 +514,9 @@ function bindConnectionGate() {
window.TarotNumbersUi?.init?.({
getReferenceData: () => appRuntime.getReferenceData?.() || null,
getMagickDataset: () => appRuntime.getMagickDataset?.() || null,
ensureTarotSection
ensureTarotSection,
getActiveSection: () => sectionStateUi.getActiveSection?.() || "home",
setActiveSection: (section) => sectionStateUi.setActiveSection?.(section)
});
window.TarotSpreadUi?.init?.({
@@ -608,6 +612,8 @@ sectionStateUi.init?.({
openAlphabetLettersEl,
openAlphabetTextEl,
openNumbersEl,
openNumbersBrowseEl,
openNumbersTheoryEl,
openZodiacEl,
openNatalEl,
openQuizEl,
@@ -698,6 +704,8 @@ navigationUi.init?.({
getMagickDataset: () => appRuntime.getMagickDataset?.() || null,
normalizeNumberValue,
selectNumberEntry,
showNumbersBrowseView: showBrowseView,
showNumbersTheoryView: showTheoryView,
elements: {
openHomeEl,
openSettingsEl,
@@ -728,6 +736,8 @@ navigationUi.init?.({
openAlphabetLettersEl,
openAlphabetTextEl,
openNumbersEl,
openNumbersBrowseEl,
openNumbersTheoryEl,
openZodiacEl,
openNatalEl,
openQuizEl,
+125 -7
View File
@@ -565,6 +565,111 @@
}
}
function normalizeDerivedDeckId(value) {
return String(value || "")
.trim()
.toLowerCase()
.replace(/\.json$/i, "")
.replace(/[_\s]+/g, "-")
.replace(/[^a-z0-9-]+/g, "-")
.replace(/-{2,}/g, "-")
.replace(/^-+|-+$/g, "");
}
function toPathSegments(pathValue) {
const normalizedPath = String(pathValue || "").trim();
if (!normalizedPath) {
return [];
}
let pathname = normalizedPath;
try {
pathname = new URL(normalizedPath).pathname;
} catch {
pathname = normalizedPath.split("?")[0].split("#")[0];
}
return pathname
.split("/")
.map((segment) => String(segment || "").trim())
.filter(Boolean)
.map((segment) => {
try {
return decodeURIComponent(segment);
} catch {
return segment;
}
});
}
function deriveDeckIdFromPath(pathValue) {
const segments = toPathSegments(pathValue);
if (!segments.length) {
return "";
}
const lowerSegments = segments.map((segment) => segment.toLowerCase());
for (let index = 0; index < lowerSegments.length - 1; index += 1) {
if (lowerSegments[index] !== "decks") {
continue;
}
const deckId = normalizeDerivedDeckId(segments[index + 1]);
if (deckId && deckId !== "manifest") {
return deckId;
}
}
const lastIndex = segments.length - 1;
const lastLower = lowerSegments[lastIndex];
if ((lastLower === "deck.json" || lastLower === "manifest" || lastLower === "manifest.json") && lastIndex > 0) {
return normalizeDerivedDeckId(segments[lastIndex - 1]);
}
const fallbackId = normalizeDerivedDeckId(segments[lastIndex]);
if (!fallbackId || fallbackId === "decks" || fallbackId === "deck" || fallbackId === "manifest") {
return "";
}
return fallbackId;
}
function deriveDeckIdFromSource(entry) {
const explicitId = normalizeDerivedDeckId(entry?.id || entry?.deckId || "");
if (explicitId) {
return explicitId;
}
const manifestPathId = deriveDeckIdFromPath(entry?.manifestPath);
if (manifestPathId) {
return manifestPathId;
}
return deriveDeckIdFromPath(entry?.basePath);
}
function formatDeckLabelFromId(deckId) {
const normalizedDeckId = normalizeDerivedDeckId(deckId);
if (!normalizedDeckId) {
return "";
}
return normalizedDeckId
.split("-")
.filter(Boolean)
.map((token) => token.charAt(0).toUpperCase() + token.slice(1))
.join(" ");
}
function resolveDeckSourceLabel(entry, deckId) {
const explicitLabel = String(entry?.label || "").trim();
if (explicitLabel) {
return explicitLabel;
}
return formatDeckLabelFromId(deckId) || deckId;
}
function toDeckSourceMap(sourceList) {
const sourceMap = {};
if (!Array.isArray(sourceList)) {
@@ -572,7 +677,7 @@
}
sourceList.forEach((entry) => {
const id = String(entry?.id || "").trim().toLowerCase();
const id = deriveDeckIdFromSource(entry);
const basePath = String(entry?.basePath || "").trim().replace(/\/$/, "");
const manifestPath = String(entry?.manifestPath || "").trim();
if (!id || !manifestPath) {
@@ -581,7 +686,7 @@
sourceMap[id] = {
id,
label: String(entry?.label || id),
label: resolveDeckSourceLabel(entry, id),
basePath,
manifestPath,
cardBackPath: String(entry?.cardBackPath || "").trim(),
@@ -604,11 +709,24 @@
const registry = readManifestJsonSync(registryUrl);
const registryDecks = Array.isArray(registry?.decks)
? registry.decks.map((entry) => ({
id: entry?.id,
label: entry?.label,
manifestPath: window.TarotDataService?.buildApiUrl?.(`/api/v1/decks/${encodeURIComponent(String(entry?.id || "").trim().toLowerCase())}/manifest`) || `${getApiBaseUrl()}/api/v1/decks/${encodeURIComponent(String(entry?.id || "").trim().toLowerCase())}/manifest`
}))
? registry.decks.map((entry) => {
const normalizedDeckId = normalizeDerivedDeckId(entry?.id || entry?.deckId || "");
const apiManifestPath = normalizedDeckId
? (
window.TarotDataService?.buildApiUrl?.(`/api/v1/decks/${encodeURIComponent(normalizedDeckId)}/manifest`)
|| `${getApiBaseUrl()}/api/v1/decks/${encodeURIComponent(normalizedDeckId)}/manifest`
)
: "";
return {
id: normalizedDeckId,
label: entry?.label,
basePath: entry?.basePath,
manifestPath: String(entry?.manifestPath || "").trim() || apiManifestPath,
cardBackPath: entry?.cardBackPath,
thumbnailRoot: entry?.thumbnailRoot
};
})
: [];
return toDeckSourceMap(registryDecks);
+84
View File
@@ -6600,6 +6600,90 @@
padding: 0 10px;
}
.numbers-theory-card {
gap: 10px;
}
.numbers-theory-controls {
display: grid;
grid-template-columns: minmax(180px, 1fr) auto auto;
gap: 8px;
align-items: center;
}
.numbers-theory-input {
width: 100%;
min-height: 32px;
border-radius: 8px;
border: 1px solid #3f3f46;
background: #141420;
color: #e4e4e7;
padding: 6px 10px;
font-size: 13px;
outline: none;
box-sizing: border-box;
}
.numbers-theory-input:focus {
border-color: #7c3aed;
box-shadow: 0 0 0 1px rgba(124, 58, 237, 0.25);
}
.numbers-theory-output {
display: grid;
gap: 10px;
}
.numbers-theory-section {
border: 1px solid #2f2f37;
border-radius: 10px;
background: #0f0f16;
padding: 10px;
display: grid;
gap: 8px;
}
.numbers-theory-section-heading {
margin: 0;
color: #d4d4d8;
font-size: 12px;
font-weight: 700;
letter-spacing: 0.04em;
text-transform: uppercase;
}
.numbers-theory-grid {
display: grid;
grid-template-columns: minmax(140px, 210px) minmax(0, 1fr);
gap: 6px 10px;
align-items: start;
}
.numbers-theory-label {
color: #a1a1aa;
font-size: 12px;
line-height: 1.35;
font-weight: 600;
}
.numbers-theory-value {
color: #e4e4e7;
font-size: 12px;
line-height: 1.35;
overflow-wrap: anywhere;
word-break: break-word;
}
@media (max-width: 980px) {
.numbers-theory-controls {
grid-template-columns: 1fr;
}
.numbers-theory-grid {
grid-template-columns: 1fr;
}
}
/* ── Gods section ────────────────────────────────────────────────────── */
#gods-section {
height: calc(100vh - 61px);
+17 -1
View File
@@ -227,7 +227,22 @@
});
bindClick(elements.openNumbersEl, () => {
setActiveSection(getActiveSection() === "numbers" ? "home" : "numbers");
const shouldOpenNumbers = getActiveSection() !== "numbers";
setActiveSection(shouldOpenNumbers ? "numbers" : "home");
if (shouldOpenNumbers) {
config.showNumbersBrowseView?.(false);
}
});
bindClick(elements.openNumbersBrowseEl, () => {
setActiveSection("numbers");
config.showNumbersBrowseView?.(false);
});
bindClick(elements.openNumbersTheoryEl, () => {
setActiveSection("numbers");
config.showNumbersTheoryView?.(false);
scheduleSectionDetailOnly("numbers");
});
bindClick(elements.openZodiacEl, () => {
@@ -362,6 +377,7 @@
}
setActiveSection("numbers");
config.showNumbersBrowseView?.(false);
requestAnimationFrame(() => {
if (typeof config.selectNumberEntry === "function") {
config.selectNumberEntry(normalizedValue);
+648 -3
View File
@@ -1,6 +1,624 @@
(function () {
"use strict";
const THEORY_DEFAULT_INPUT = "108";
const THEORY_MAX_FACTORIZATION_ABS = 10000000000;
const THEORY_MAX_COLLATZ_START = 10000000;
const theoryState = {
inputValue: THEORY_DEFAULT_INPUT
};
function formatTheoryNumber(value, fractionDigits = 12) {
if (!Number.isFinite(value)) {
return "--";
}
if (Object.is(value, -0)) {
return "0";
}
const abs = Math.abs(value);
if (abs !== 0 && (abs >= 1e15 || abs < 1e-6)) {
return value.toExponential(8);
}
const formatter = new Intl.NumberFormat("en-US", {
maximumFractionDigits: fractionDigits
});
return formatter.format(value);
}
function formatTheoryList(values) {
if (!Array.isArray(values) || !values.length) {
return "--";
}
return values.join(", ");
}
function parseTheoryInput(rawInput) {
const text = String(rawInput ?? "").trim();
if (!text) {
return {
ok: false,
message: "Enter a number to analyze."
};
}
const normalized = text.replace(/[,_\s]/g, "");
const value = Number(normalized);
if (!Number.isFinite(value)) {
return {
ok: false,
message: "Could not parse that value as a finite number."
};
}
return {
ok: true,
raw: text,
normalized,
value
};
}
function gcd(a, b) {
let x = Math.abs(Math.trunc(a));
let y = Math.abs(Math.trunc(b));
while (y !== 0) {
const next = x % y;
x = y;
y = next;
}
return x;
}
function getDigitStats(integerValue) {
const absInt = Math.abs(integerValue);
const digits = String(absInt);
const digitArray = digits.split("").map((digit) => Number(digit));
const digitSum = digitArray.reduce((sum, digit) => sum + digit, 0);
let additivePersistence = 0;
let additiveCurrent = absInt;
while (additiveCurrent >= 10) {
additiveCurrent = String(additiveCurrent)
.split("")
.reduce((sum, digit) => sum + Number(digit), 0);
additivePersistence += 1;
}
let multiplicativePersistence = 0;
let multiplicativeCurrent = absInt;
while (multiplicativeCurrent >= 10) {
multiplicativeCurrent = String(multiplicativeCurrent)
.split("")
.reduce((product, digit) => product * Number(digit), 1);
multiplicativePersistence += 1;
if (multiplicativePersistence > 20) {
break;
}
}
return {
digits,
digitCount: digits.length,
digitSum,
digitalRoot: additiveCurrent,
additivePersistence,
multiplicativePersistence
};
}
function factorizeInteger(absInteger) {
if (!Number.isSafeInteger(absInteger) || absInteger < 2) {
return [];
}
let remainder = absInteger;
const factors = [];
let exponent = 0;
while (remainder % 2 === 0) {
remainder /= 2;
exponent += 1;
}
if (exponent > 0) {
factors.push({ prime: 2, exponent });
}
let divisor = 3;
while (divisor * divisor <= remainder) {
exponent = 0;
while (remainder % divisor === 0) {
remainder /= divisor;
exponent += 1;
}
if (exponent > 0) {
factors.push({ prime: divisor, exponent });
}
divisor += 2;
}
if (remainder > 1) {
factors.push({ prime: remainder, exponent: 1 });
}
return factors;
}
function createDivisorsFromFactors(factors) {
if (!Array.isArray(factors) || !factors.length) {
return [1];
}
let divisors = [1];
factors.forEach(({ prime, exponent }) => {
const next = [];
divisors.forEach((existing) => {
let multiplier = 1;
for (let power = 0; power <= exponent; power += 1) {
next.push(existing * multiplier);
multiplier *= prime;
}
});
divisors = next;
});
return divisors.sort((left, right) => left - right);
}
function getRomanNumeral(value) {
const integer = Math.trunc(value);
if (!Number.isFinite(integer) || integer < 1 || integer > 3999) {
return "--";
}
const symbols = [
[1000, "M"],
[900, "CM"],
[500, "D"],
[400, "CD"],
[100, "C"],
[90, "XC"],
[50, "L"],
[40, "XL"],
[10, "X"],
[9, "IX"],
[5, "V"],
[4, "IV"],
[1, "I"]
];
let remainder = integer;
let output = "";
symbols.forEach(([weight, glyph]) => {
while (remainder >= weight) {
remainder -= weight;
output += glyph;
}
});
return output;
}
function isPerfectSquare(value) {
if (!Number.isSafeInteger(value) || value < 0) {
return false;
}
const root = Math.trunc(Math.sqrt(value));
return root * root === value;
}
function isPerfectCube(value) {
if (!Number.isSafeInteger(value)) {
return false;
}
const root = Math.round(Math.cbrt(value));
return root * root * root === value;
}
function fibonacciMembership(value) {
if (!Number.isSafeInteger(value) || value < 0) {
return false;
}
const candidateA = 5 * value * value + 4;
const candidateB = 5 * value * value - 4;
return isPerfectSquare(candidateA) || isPerfectSquare(candidateB);
}
function factorialMembership(value) {
if (!Number.isSafeInteger(value) || value < 1) {
return null;
}
let current = 1;
let index = 1;
while (current < value && current <= Number.MAX_SAFE_INTEGER) {
index += 1;
current *= index;
}
return current === value ? index : null;
}
function collatzStats(value) {
if (!Number.isSafeInteger(value) || value <= 0 || value > THEORY_MAX_COLLATZ_START) {
return {
available: false,
reason: `Available for positive integers up to ${formatTheoryNumber(THEORY_MAX_COLLATZ_START, 0)}.`
};
}
let current = value;
let steps = 0;
let peak = value;
while (current !== 1 && steps < 20000) {
if (current % 2 === 0) {
current /= 2;
} else {
current = (3 * current) + 1;
}
if (current > peak) {
peak = current;
}
steps += 1;
}
return {
available: true,
steps,
peak,
completed: current === 1
};
}
function happyNumberStats(value) {
if (!Number.isSafeInteger(value) || value <= 0) {
return {
available: false,
isHappy: false
};
}
const seen = new Set();
let current = value;
while (current !== 1 && !seen.has(current)) {
seen.add(current);
current = String(current)
.split("")
.reduce((sum, digit) => {
const numberDigit = Number(digit);
return sum + (numberDigit * numberDigit);
}, 0);
}
return {
available: true,
isHappy: current === 1
};
}
function getIntegerProperties(integerValue) {
const absInteger = Math.abs(integerValue);
const digitStats = getDigitStats(integerValue);
const canFactorExactly = absInteger <= THEORY_MAX_FACTORIZATION_ABS;
const factors = canFactorExactly ? factorizeInteger(absInteger) : [];
let divisorCount = null;
let sigma = null;
let properDivisorSum = null;
let divisors = null;
let eulerPhi = null;
let mobius = null;
let liouville = null;
let isPrime = false;
let isComposite = false;
let semiprime = false;
if (canFactorExactly && absInteger >= 1) {
divisorCount = factors.reduce((product, item) => product * (item.exponent + 1), 1);
sigma = factors.reduce((product, item) => {
const numerator = (item.prime ** (item.exponent + 1)) - 1;
return product * (numerator / (item.prime - 1));
}, 1);
properDivisorSum = absInteger === 1 ? 0 : sigma - absInteger;
eulerPhi = absInteger === 1
? 1
: factors.reduce((product, item) => product * ((item.prime - 1) * (item.prime ** (item.exponent - 1))), 1);
const hasSquareFactor = factors.some((item) => item.exponent > 1);
mobius = absInteger === 1 ? 1 : (hasSquareFactor ? 0 : (factors.length % 2 === 0 ? 1 : -1));
liouville = absInteger === 1
? 1
: (factors.reduce((sum, item) => sum + item.exponent, 0) % 2 === 0 ? 1 : -1);
isPrime = absInteger > 1 && factors.length === 1 && factors[0].exponent === 1;
isComposite = absInteger > 1 && !isPrime;
semiprime = absInteger > 1 && factors.reduce((sum, item) => sum + item.exponent, 0) === 2;
if (divisorCount <= 256) {
divisors = createDivisorsFromFactors(factors);
}
}
const abundanceClass = properDivisorSum == null
? "Unknown"
: (properDivisorSum === absInteger ? "Perfect" : (properDivisorSum > absInteger ? "Abundant" : "Deficient"));
const triangularIndex = absInteger >= 0
? ((Math.sqrt((8 * absInteger) + 1) - 1) / 2)
: null;
const pentagonalIndex = absInteger >= 0
? ((1 + Math.sqrt((24 * absInteger) + 1)) / 6)
: null;
const hexagonalIndex = absInteger >= 0
? ((1 + Math.sqrt((8 * absInteger) + 1)) / 4)
: null;
const factorialIndex = factorialMembership(absInteger);
const collatz = collatzStats(absInteger);
const happy = happyNumberStats(absInteger);
const residueMods = [2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12]
.map((modulus) => `mod ${modulus}: ${((integerValue % modulus) + modulus) % modulus}`);
const divisibility = [2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12]
.map((modulus) => `${modulus}:${integerValue % modulus === 0 ? "Y" : "N"}`);
const parity = integerValue % 2 === 0 ? "Even" : "Odd";
const powerOfTwo = absInteger > 0 ? Number.isInteger(Math.log2(absInteger)) : false;
const powerOfTen = absInteger > 0 ? Number.isInteger(Math.log10(absInteger)) : false;
const binary = absInteger <= Number.MAX_SAFE_INTEGER
? integerValue.toString(2)
: "--";
const octal = absInteger <= Number.MAX_SAFE_INTEGER
? integerValue.toString(8)
: "--";
const hex = absInteger <= Number.MAX_SAFE_INTEGER
? integerValue.toString(16).toUpperCase()
: "--";
const decimalText = String(absInteger);
const isPalindrome = decimalText === decimalText.split("").reverse().join("");
const isHarshad = digitStats.digitSum > 0 ? absInteger % digitStats.digitSum === 0 : false;
const armstrongPower = digitStats.digitCount;
const armstrongSum = decimalText
.split("")
.reduce((sum, digit) => sum + (Number(digit) ** armstrongPower), 0);
const isArmstrong = armstrongSum === absInteger;
const theoryRows = {
integerMeta: [
["Parity", parity],
["Safe integer", Number.isSafeInteger(integerValue) ? "Yes" : "No"],
["GCD(n, 360)", formatTheoryNumber(gcd(integerValue, 360), 0)],
["Power of 2", powerOfTwo ? "Yes" : "No"],
["Power of 10", powerOfTen ? "Yes" : "No"]
],
digits: [
["Digits", digitStats.digits],
["Digit count", formatTheoryNumber(digitStats.digitCount, 0)],
["Digit sum", formatTheoryNumber(digitStats.digitSum, 0)],
["Digital root", formatTheoryNumber(digitStats.digitalRoot, 0)],
["Additive persistence", formatTheoryNumber(digitStats.additivePersistence, 0)],
["Multiplicative persistence", formatTheoryNumber(digitStats.multiplicativePersistence, 0)]
],
numberTheory: [
["Prime", isPrime ? "Yes" : "No"],
["Composite", isComposite ? "Yes" : "No"],
["Semiprime", semiprime ? "Yes" : "No"],
["Prime factorization", factors.length ? factors.map((item) => `${item.prime}^${item.exponent}`).join(" x ") : (absInteger < 2 ? "--" : "Unavailable")],
["Divisor count (tau)", divisorCount == null ? "Unavailable" : formatTheoryNumber(divisorCount, 0)],
["Sum of divisors (sigma)", sigma == null ? "Unavailable" : formatTheoryNumber(sigma, 0)],
["Proper divisor sum", properDivisorSum == null ? "Unavailable" : formatTheoryNumber(properDivisorSum, 0)],
["Abundance class", abundanceClass],
["Euler totient phi(n)", eulerPhi == null ? "Unavailable" : formatTheoryNumber(eulerPhi, 0)],
["Mobius mu(n)", mobius == null ? "Unavailable" : formatTheoryNumber(mobius, 0)],
["Liouville lambda(n)", liouville == null ? "Unavailable" : formatTheoryNumber(liouville, 0)]
],
sequences: [
["Triangular", Number.isInteger(triangularIndex) ? `Yes (T_${formatTheoryNumber(triangularIndex, 0)})` : "No"],
["Square", isPerfectSquare(absInteger) ? "Yes" : "No"],
["Cube", isPerfectCube(integerValue) ? "Yes" : "No"],
["Pentagonal", Number.isInteger(pentagonalIndex) ? `Yes (P_${formatTheoryNumber(pentagonalIndex, 0)})` : "No"],
["Hexagonal", Number.isInteger(hexagonalIndex) ? `Yes (H_${formatTheoryNumber(hexagonalIndex, 0)})` : "No"],
["Fibonacci", fibonacciMembership(absInteger) ? "Yes" : "No"],
["Factorial", factorialIndex ? `Yes (${formatTheoryNumber(factorialIndex, 0)}!)` : "No"]
],
digitTraits: [
["Palindrome (base 10)", isPalindrome ? "Yes" : "No"],
["Harshad", isHarshad ? "Yes" : "No"],
["Armstrong/Narcissistic", isArmstrong ? "Yes" : "No"],
["Happy", happy.available ? (happy.isHappy ? "Yes" : "No") : "Unavailable"]
],
modular: [
["Divisibility (2..12)", formatTheoryList(divisibility)],
["Residues", formatTheoryList(residueMods)]
],
representations: [
["Binary", binary],
["Octal", octal],
["Hex", hex],
["Roman numeral", getRomanNumeral(absInteger)]
],
dynamic: [
["Collatz", collatz.available
? `${formatTheoryNumber(collatz.steps, 0)} steps, peak ${formatTheoryNumber(collatz.peak, 0)}${collatz.completed ? "" : " (stopped early)"}`
: collatz.reason],
["Divisors", divisors
? formatTheoryList(divisors.map((item) => formatTheoryNumber(item, 0)))
: (canFactorExactly
? "List omitted (over 256 divisors)."
: `Unavailable above |n| > ${formatTheoryNumber(THEORY_MAX_FACTORIZATION_ABS, 0)}.`)]
]
};
return {
absInteger,
canFactorExactly,
rows: theoryRows
};
}
function buildTheorySection(title, rows) {
const sectionEl = document.createElement("section");
sectionEl.className = "numbers-theory-section";
const headingEl = document.createElement("h4");
headingEl.className = "numbers-theory-section-heading";
headingEl.textContent = title;
const bodyEl = document.createElement("div");
bodyEl.className = "numbers-theory-grid";
rows.forEach((row) => {
if (!Array.isArray(row) || row.length < 2) {
return;
}
const labelEl = document.createElement("div");
labelEl.className = "numbers-theory-label";
labelEl.textContent = String(row[0]);
const valueEl = document.createElement("div");
valueEl.className = "numbers-theory-value";
valueEl.textContent = String(row[1]);
bodyEl.append(labelEl, valueEl);
});
sectionEl.append(headingEl, bodyEl);
return sectionEl;
}
function buildTheoryAnalysisView(rawInput) {
const parsed = parseTheoryInput(rawInput);
const fragment = document.createDocumentFragment();
if (!parsed.ok) {
const messageEl = document.createElement("div");
messageEl.className = "numbers-detail-text numbers-detail-text--muted";
messageEl.textContent = parsed.message;
fragment.appendChild(messageEl);
return fragment;
}
const { value } = parsed;
const abs = Math.abs(value);
const isInteger = Number.isInteger(value);
const reciprocal = value !== 0 ? (1 / value) : null;
const integerPart = Math.trunc(value);
const fractionalPart = value - integerPart;
fragment.appendChild(buildTheorySection("General", [
["Input", parsed.raw],
["Normalized", formatTheoryNumber(value)],
["Sign", value > 0 ? "Positive" : (value < 0 ? "Negative" : "Zero")],
["Absolute value", formatTheoryNumber(abs)],
["Integer", isInteger ? "Yes" : "No"],
["Whole number", isInteger && value >= 0 ? "Yes" : "No"],
["Natural number", isInteger && value >= 1 ? "Yes" : "No"],
["Opposite", formatTheoryNumber(-value)],
["Reciprocal", reciprocal == null ? "Undefined" : formatTheoryNumber(reciprocal)],
["Floor", formatTheoryNumber(Math.floor(value), 0)],
["Ceiling", formatTheoryNumber(Math.ceil(value), 0)],
["Truncated", formatTheoryNumber(integerPart, 0)],
["Fractional part", formatTheoryNumber(fractionalPart)],
["Scientific notation", value.toExponential(8)]
]));
if (!isInteger) {
fragment.appendChild(buildTheorySection("Non-integer notes", [
["Detail", "Integer-only number theory metrics are shown for integers. Enter a whole number for full analysis."]
]));
return fragment;
}
if (!Number.isSafeInteger(value)) {
fragment.appendChild(buildTheorySection("Safe integer limit", [
["Detail", "This value is outside JavaScript safe integer precision. Exact factor/divisor properties are skipped."]
]));
return fragment;
}
const integerProperties = getIntegerProperties(value);
fragment.appendChild(buildTheorySection("Integer metadata", integerProperties.rows.integerMeta));
fragment.appendChild(buildTheorySection("Digit analysis", integerProperties.rows.digits));
fragment.appendChild(buildTheorySection("Number theory", integerProperties.rows.numberTheory));
fragment.appendChild(buildTheorySection("Sequence membership", integerProperties.rows.sequences));
fragment.appendChild(buildTheorySection("Digit traits", integerProperties.rows.digitTraits));
fragment.appendChild(buildTheorySection("Modular arithmetic", integerProperties.rows.modular));
fragment.appendChild(buildTheorySection("Representations", integerProperties.rows.representations));
fragment.appendChild(buildTheorySection("Dynamic behavior", integerProperties.rows.dynamic));
return fragment;
}
function buildTheoryCard(selectedNumberValue) {
const cardEl = document.createElement("div");
cardEl.className = "numbers-detail-card numbers-theory-card";
const headingEl = document.createElement("strong");
headingEl.textContent = "Theory";
const introEl = document.createElement("div");
introEl.className = "numbers-detail-text numbers-detail-text--muted";
introEl.textContent = "Enter any number to inspect deep number theory and arithmetic properties.";
const controlsEl = document.createElement("div");
controlsEl.className = "numbers-theory-controls";
const inputEl = document.createElement("input");
inputEl.type = "text";
inputEl.inputMode = "decimal";
inputEl.className = "numbers-theory-input";
inputEl.placeholder = "e.g. 108, 137, -42, 12.5";
inputEl.value = theoryState.inputValue || "";
inputEl.setAttribute("aria-label", "Number to analyze");
const analyzeBtn = document.createElement("button");
analyzeBtn.type = "button";
analyzeBtn.className = "numbers-nav-btn";
analyzeBtn.textContent = "Analyze";
const selectedBtn = document.createElement("button");
selectedBtn.type = "button";
selectedBtn.className = "numbers-nav-btn";
selectedBtn.textContent = `Use Selected Number (${selectedNumberValue})`;
controlsEl.append(inputEl, analyzeBtn, selectedBtn);
const outputEl = document.createElement("div");
outputEl.className = "numbers-theory-output";
const renderOutput = () => {
theoryState.inputValue = inputEl.value;
const content = buildTheoryAnalysisView(inputEl.value);
outputEl.replaceChildren(content);
};
analyzeBtn.addEventListener("click", renderOutput);
inputEl.addEventListener("keydown", (event) => {
if (event.key === "Enter") {
event.preventDefault();
renderOutput();
}
});
selectedBtn.addEventListener("click", () => {
inputEl.value = String(selectedNumberValue);
renderOutput();
});
renderOutput();
cardEl.append(headingEl, introEl, controlsEl, outputEl);
return cardEl;
}
function hasTarotAccess() {
return window.TarotAppConfig?.hasTarotAccess?.() === true;
}
@@ -244,6 +862,13 @@
return;
}
const isTheoryView = context.activeNumbersView === "theory";
specialPanelEl.hidden = isTheoryView;
if (isTheoryView) {
specialPanelEl.replaceChildren();
return;
}
const playingSuit = entry?.associations?.playingSuit || "hearts";
const boardCardEl = buildNumbersSpecialCardSlots(context, playingSuit);
specialPanelEl.replaceChildren(boardCardEl);
@@ -460,6 +1085,18 @@
return;
}
const isTheoryView = context.activeNumbersView === "theory";
const detailHeadingEl = detailNameEl instanceof HTMLElement
? detailNameEl.closest(".planet-detail-heading")
: null;
const sequenceNavEl = detailHeadingEl instanceof HTMLElement
? detailHeadingEl.querySelector(".detail-sequence-nav")
: null;
if (sequenceNavEl instanceof HTMLElement) {
sequenceNavEl.hidden = isTheoryView;
}
const normalized = entry.value;
const opposite = entry.opposite;
const rootTarget = normalizeNumberValue(entry.digitalRoot);
@@ -469,11 +1106,13 @@
}
if (detailTypeEl) {
detailTypeEl.textContent = `Opposite: ${opposite}`;
detailTypeEl.textContent = isTheoryView ? "Theory Analyzer" : `Opposite: ${opposite}`;
}
if (detailSummaryEl) {
detailSummaryEl.textContent = entry.summary || "";
detailSummaryEl.textContent = isTheoryView
? "Analyze any value with an extensive set of arithmetic and number theory properties."
: (entry.summary || "");
}
renderNumbersSpecialPanel(context, normalized, entry);
@@ -484,6 +1123,12 @@
detailBodyEl.replaceChildren();
const theoryCardEl = buildTheoryCard(normalized);
if (isTheoryView) {
detailBodyEl.append(theoryCardEl);
return;
}
const pairCardEl = document.createElement("div");
pairCardEl.className = "numbers-detail-card";
@@ -601,7 +1246,7 @@
calendarCardEl.append(calendarHeadingEl, calendarLinksWrapEl);
const detailCards = [pairCardEl, kabbalahCardEl, alphabetCardEl];
const detailCards = [theoryCardEl, pairCardEl, kabbalahCardEl, alphabetCardEl];
if (hasTarotAccess()) {
const tarotCardEl = document.createElement("div");
+75 -3
View File
@@ -3,10 +3,14 @@
let initialized = false;
let activeNumberValue = 0;
let activeNumbersView = "browse";
let sectionChangeListenerBound = false;
let config = {
getReferenceData: () => null,
getMagickDataset: () => null,
ensureTarotSection: null
ensureTarotSection: null,
getActiveSection: () => "home",
setActiveSection: null
};
const NUMBERS_SPECIAL_BASE_VALUES = [1, 2, 3, 4];
@@ -88,6 +92,12 @@
return typeof config.getMagickDataset === "function" ? config.getMagickDataset() : null;
}
function getActiveSection() {
return typeof config.getActiveSection === "function"
? config.getActiveSection()
: "home";
}
function getElements() {
return {
countEl: document.getElementById("numbers-count"),
@@ -96,10 +106,29 @@
detailTypeEl: document.getElementById("numbers-detail-type"),
detailSummaryEl: document.getElementById("numbers-detail-summary"),
detailBodyEl: document.getElementById("numbers-detail-body"),
specialPanelEl: document.getElementById("numbers-special-panel")
specialPanelEl: document.getElementById("numbers-special-panel"),
openNumbersBrowseEl: document.getElementById("open-numbers-browse"),
openNumbersTheoryEl: document.getElementById("open-numbers-theory")
};
}
function normalizeNumbersView(value) {
return value === "theory" ? "theory" : "browse";
}
function applyNumbersViewUiState() {
const { openNumbersBrowseEl, openNumbersTheoryEl } = getElements();
const isNumbersSectionActive = getActiveSection() === "numbers";
if (openNumbersBrowseEl) {
openNumbersBrowseEl.classList.toggle("is-active", isNumbersSectionActive && activeNumbersView === "browse");
}
if (openNumbersTheoryEl) {
openNumbersTheoryEl.classList.toggle("is-active", isNumbersSectionActive && activeNumbersView === "theory");
}
}
function normalizeNumberValue(value) {
const parsed = Number(value);
if (!Number.isFinite(parsed)) {
@@ -257,6 +286,7 @@
computeDigitalRoot,
rankLabelToTarotMinorRank,
ensureTarotSection: config.ensureTarotSection,
activeNumbersView,
selectNumberEntry,
NUMBERS_SPECIAL_BASE_VALUES,
numbersSpecialFlipState,
@@ -282,6 +312,7 @@
function ensureNumbersSection() {
const { listEl } = getElements();
if (!listEl) {
applyNumbersViewUiState();
return;
}
@@ -309,6 +340,33 @@
renderNumbersList();
renderNumberDetail(activeNumberValue);
applyNumbersViewUiState();
}
function setNumbersView(view, openNumbersSection = false) {
activeNumbersView = normalizeNumbersView(view);
if (openNumbersSection && typeof config.setActiveSection === "function") {
config.setActiveSection("numbers");
}
if (getActiveSection() === "numbers" || openNumbersSection) {
ensureNumbersSection();
const { detailBodyEl } = getElements();
if (detailBodyEl instanceof HTMLElement) {
detailBodyEl.scrollTop = 0;
}
} else {
applyNumbersViewUiState();
}
}
function showBrowseView(openNumbersSection = false) {
setNumbersView("browse", openNumbersSection);
}
function showTheoryView(openNumbersSection = false) {
setNumbersView("theory", openNumbersSection);
}
function init(nextConfig = {}) {
@@ -316,6 +374,15 @@
...config,
...nextConfig
};
if (!sectionChangeListenerBound) {
document.addEventListener("section:changed", () => {
applyNumbersViewUiState();
});
sectionChangeListenerBound = true;
}
applyNumbersViewUiState();
}
window.TarotNumbersUi = {
@@ -323,6 +390,11 @@
init,
ensureNumbersSection,
selectNumberEntry,
normalizeNumberValue
normalizeNumberValue,
showBrowseView,
showTheoryView,
getActiveView() {
return activeNumbersView;
}
};
})();
+11 -5
View File
@@ -71,7 +71,13 @@
<button id="open-kabbalah-cube" class="settings-trigger topbar-sub-trigger" type="button" role="menuitem">Cube</button>
</div>
</div>
<button id="open-numbers" class="settings-trigger" type="button" aria-pressed="false">Numbers</button>
<div class="topbar-dropdown" aria-label="Numbers menu">
<button id="open-numbers" class="settings-trigger" type="button" aria-pressed="false" aria-haspopup="menu" aria-controls="numbers-subpages" aria-expanded="false">Numbers ▾</button>
<div id="numbers-subpages" class="topbar-dropdown-menu" role="menu" aria-label="Numbers subpages">
<button id="open-numbers-browse" class="settings-trigger topbar-sub-trigger" type="button" role="menuitem">Browse</button>
<button id="open-numbers-theory" class="settings-trigger topbar-sub-trigger" type="button" role="menuitem">Theory</button>
</div>
</div>
<button id="open-quiz" class="settings-trigger" type="button" aria-pressed="false">Quiz</button>
<div class="topbar-dropdown" aria-label="Tarot menu">
<button id="open-tarot" class="settings-trigger" type="button" aria-pressed="false" aria-haspopup="menu" aria-controls="tarot-subpages" aria-expanded="false">Tarot ▾</button>
@@ -1404,19 +1410,19 @@
<script src="app/ui-gods-references.js"></script>
<script src="app/ui-gods.js"></script>
<script src="app/ui-enochian.js?v=20260529-access-gating-02"></script>
<script src="app/ui-numbers-detail.js?v=20260529-access-gating-02"></script>
<script src="app/ui-numbers.js"></script>
<script src="app/ui-numbers-detail.js?v=20260628-numbers-theory-nav-02"></script>
<script src="app/ui-numbers.js?v=20260628-numbers-theory-nav-02"></script>
<script src="app/ui-tarot-spread.js"></script>
<script src="app/ui-tarot-frame.js?v=20260424-frame-export-01"></script>
<script src="app/ui-settings.js?v=20260603-detail-text-scale-01"></script>
<script src="app/ui-chrome.js?v=20260328-topbar-settings-01"></script>
<script src="app/ui-navigation.js?v=20260528-kabbalah-cross-split-06"></script>
<script src="app/ui-navigation.js?v=20260628-numbers-theory-nav-02"></script>
<script src="app/ui-calendar-formatting.js?v=20260307b"></script>
<script src="app/ui-calendar-visuals.js?v=20260307b"></script>
<script src="app/ui-home-calendar.js?v=20260415-stellarium-toggle-01"></script>
<script src="app/ui-section-state.js?v=20260531-now-polling-02"></script>
<script src="app/app-runtime.js?v=20260531-now-polling-02"></script>
<script src="app.js?v=20260603-detail-text-scale-01"></script>
<script src="app.js?v=20260628-numbers-theory-nav-02"></script>
<script src="app/navigation-detail-test-harness.js?v=20260401-universal-detail-02"></script>
</body>
</html>
+16 -12
View File
@@ -41,25 +41,30 @@ Use this companion repository for downloadable decks:
Typical flow:
1. Clone the deck repository somewhere local.
2. Copy one or more deck folders into `asset/tarot deck/`.
3. Validate and regenerate the deck registry.
2. Copy a deck folder into `asset/tarot deck/` (repeat for more decks as needed).
3. Start the app to pick up the deck list.
```powershell
git clone https://code.glowers.club/goyimnose/tarot-deck.git
# Copy selected deck folder(s) into Tarot Time deck directory.
npm run validate:decks
# Copy a deck folder into asset/tarot deck/.
npm run start
```
Auto-discovery behavior:
- Deck ID is automatically inferred from the deck folder path when possible.
- Deck name is automatically generated from the ID when no label is provided.
- Example: `rider-waite-smith` becomes `Rider Waite Smith`.
## Deck Authoring and Validation
Deck discovery is registry-driven and generated automatically.
Deck discovery is folder-driven and automatic.
1. Copy `asset/tarot deck/_template/` to a new folder under `asset/tarot deck/`.
2. Rename the new folder and update its `deck.json`.
3. Add card image files matching the naming rules in the manifest.
4. Run `npm run validate:decks` before publishing/testing.
5. Run `npm run start` (or `npm run generate:decks`) to rebuild `asset/tarot deck/decks.json`.
2. Rename the folder to the deck ID you want (for example `thoth-crowley`).
3. Update `deck.json` and add card image files matching the naming rules in the manifest.
4. `label` in `deck.json` is optional; when omitted, a readable name is auto-generated from the folder-based ID.
5. Run `npm run start` and confirm the deck appears in Settings → Tarot Deck.
Rules and behavior:
@@ -70,15 +75,14 @@ Rules and behavior:
- Decks can define `cardBack` in `deck.json`; if omitted, `back.webp/png/jpg/jpeg/avif/gif` in the deck root is auto-detected.
- Manifests may override labels with `nameOverrides` and `minorNameOverrides`.
- Invalid manifests or missing mapped files are skipped with terminal warnings.
- If a deck entry does not include an explicit ID, the app derives it from the manifest path/folder.
## NPM Scripts
| Command | Description |
| --- | --- |
| `npm run start` | Generate deck registry, then serve the app locally and open `index.html`. |
| `npm run start` | Serve the app locally and open `index.html`. |
| `npm run dev` | Alias of `npm run start`. |
| `npm run generate:decks` | Rebuild `asset/tarot deck/decks.json`. |
| `npm run validate:decks` | Strict validation only (no write), exits on manifest/file problems. |
## Project Links