Fork of https://gist.github.com/2817050 for issue 655 that includes a patch which makes the log ticks display.
View this example at http://bl.ocks.org/2876215
Line 2825 of d3.v2.patched.js is the location of the patch.
Fork of https://gist.github.com/2817050 for issue 655 that includes a patch which makes the log ticks display.
View this example at http://bl.ocks.org/2876215
Line 2825 of d3.v2.patched.js is the location of the patch.
// patched version of d3.v2.js | |
// bug report that this patches is at https://github.com/mbostock/d3/issues/655 | |
(function(){if (!Date.now) Date.now = function() { | |
return +new Date; | |
}; | |
try { | |
document.createElement("div").style.setProperty("opacity", 0, ""); | |
} catch (error) { | |
var d3_style_prototype = CSSStyleDeclaration.prototype, | |
d3_style_setProperty = d3_style_prototype.setProperty; | |
d3_style_prototype.setProperty = function(name, value, priority) { | |
d3_style_setProperty.call(this, name, value + "", priority); | |
}; | |
} | |
d3 = {version: "2.9.1"}; // semver | |
function d3_class(ctor, properties) { | |
try { | |
for (var key in properties) { | |
Object.defineProperty(ctor.prototype, key, { | |
value: properties[key], | |
enumerable: false | |
}); | |
} | |
} catch (e) { | |
ctor.prototype = properties; | |
} | |
} | |
var d3_array = d3_arraySlice; // conversion for NodeLists | |
function d3_arrayCopy(pseudoarray) { | |
var i = -1, n = pseudoarray.length, array = []; | |
while (++i < n) array.push(pseudoarray[i]); | |
return array; | |
} | |
function d3_arraySlice(pseudoarray) { | |
return Array.prototype.slice.call(pseudoarray); | |
} | |
try { | |
d3_array(document.documentElement.childNodes)[0].nodeType; | |
} catch(e) { | |
d3_array = d3_arrayCopy; | |
} | |
var d3_arraySubclass = [].__proto__? | |
// Until ECMAScript supports array subclassing, prototype injection works well. | |
function(array, prototype) { | |
array.__proto__ = prototype; | |
}: | |
// And if your browser doesn't support __proto__, we'll use direct extension. | |
function(array, prototype) { | |
for (var property in prototype) array[property] = prototype[property]; | |
}; | |
d3.map = function(object) { | |
var map = new d3_Map; | |
for (var key in object) map.set(key, object[key]); | |
return map; | |
}; | |
function d3_Map() {} | |
d3_class(d3_Map, { | |
has: function(key) { | |
return d3_map_prefix + key in this; | |
}, | |
get: function(key) { | |
return this[d3_map_prefix + key]; | |
}, | |
set: function(key, value) { | |
return this[d3_map_prefix + key] = value; | |
}, | |
remove: function(key) { | |
key = d3_map_prefix + key; | |
return key in this && delete this[key]; | |
}, | |
keys: function() { | |
var keys = []; | |
this.forEach(function(key) { keys.push(key); }); | |
return keys; | |
}, | |
values: function() { | |
var values = []; | |
this.forEach(function(key, value) { values.push(value); }); | |
return values; | |
}, | |
entries: function() { | |
var entries = []; | |
this.forEach(function(key, value) { entries.push({key: key, value: value}); }); | |
return entries; | |
}, | |
forEach: function(f) { | |
for (var key in this) { | |
if (key.charCodeAt(0) === d3_map_prefixCode) { | |
f.call(this, key.substring(1), this[key]); | |
} | |
} | |
} | |
}); | |
var d3_map_prefix = "\0", // prevent collision with built-ins | |
d3_map_prefixCode = d3_map_prefix.charCodeAt(0); | |
function d3_identity(d) { | |
return d; | |
} | |
function d3_this() { | |
return this; | |
} | |
function d3_true() { | |
return true; | |
} | |
function d3_functor(v) { | |
return typeof v === "function" ? v : function() { return v; }; | |
} | |
d3.functor = d3_functor; | |
// Copies a variable number of methods from source to target. | |
d3.rebind = function(target, source) { | |
var i = 1, n = arguments.length, method; | |
while (++i < n) target[method = arguments[i]] = d3_rebind(target, source, source[method]); | |
return target; | |
}; | |
// Method is assumed to be a standard D3 getter-setter: | |
// If passed with no arguments, gets the value. | |
// If passed with arguments, sets the value and returns the target. | |
function d3_rebind(target, source, method) { | |
return function() { | |
var value = method.apply(source, arguments); | |
return arguments.length ? target : value; | |
}; | |
} | |
d3.ascending = function(a, b) { | |
return a < b ? -1 : a > b ? 1 : a >= b ? 0 : NaN; | |
}; | |
d3.descending = function(a, b) { | |
return b < a ? -1 : b > a ? 1 : b >= a ? 0 : NaN; | |
}; | |
d3.mean = function(array, f) { | |
var n = array.length, | |
a, | |
m = 0, | |
i = -1, | |
j = 0; | |
if (arguments.length === 1) { | |
while (++i < n) if (d3_number(a = array[i])) m += (a - m) / ++j; | |
} else { | |
while (++i < n) if (d3_number(a = f.call(array, array[i], i))) m += (a - m) / ++j; | |
} | |
return j ? m : undefined; | |
}; | |
d3.median = function(array, f) { | |
if (arguments.length > 1) array = array.map(f); | |
array = array.filter(d3_number); | |
return array.length ? d3.quantile(array.sort(d3.ascending), .5) : undefined; | |
}; | |
d3.min = function(array, f) { | |
var i = -1, | |
n = array.length, | |
a, | |
b; | |
if (arguments.length === 1) { | |
while (++i < n && ((a = array[i]) == null || a != a)) a = undefined; | |
while (++i < n) if ((b = array[i]) != null && a > b) a = b; | |
} else { | |
while (++i < n && ((a = f.call(array, array[i], i)) == null || a != a)) a = undefined; | |
while (++i < n) if ((b = f.call(array, array[i], i)) != null && a > b) a = b; | |
} | |
return a; | |
}; | |
d3.max = function(array, f) { | |
var i = -1, | |
n = array.length, | |
a, | |
b; | |
if (arguments.length === 1) { | |
while (++i < n && ((a = array[i]) == null || a != a)) a = undefined; | |
while (++i < n) if ((b = array[i]) != null && b > a) a = b; | |
} else { | |
while (++i < n && ((a = f.call(array, array[i], i)) == null || a != a)) a = undefined; | |
while (++i < n) if ((b = f.call(array, array[i], i)) != null && b > a) a = b; | |
} | |
return a; | |
}; | |
d3.extent = function(array, f) { | |
var i = -1, | |
n = array.length, | |
a, | |
b, | |
c; | |
if (arguments.length === 1) { | |
while (++i < n && ((a = c = array[i]) == null || a != a)) a = c = undefined; | |
while (++i < n) if ((b = array[i]) != null) { | |
if (a > b) a = b; | |
if (c < b) c = b; | |
} | |
} else { | |
while (++i < n && ((a = c = f.call(array, array[i], i)) == null || a != a)) a = undefined; | |
while (++i < n) if ((b = f.call(array, array[i], i)) != null) { | |
if (a > b) a = b; | |
if (c < b) c = b; | |
} | |
} | |
return [a, c]; | |
}; | |
d3.random = { | |
normal: function(mean, deviation) { | |
if (arguments.length < 2) deviation = 1; | |
if (arguments.length < 1) mean = 0; | |
return function() { | |
var x, y, r; | |
do { | |
x = Math.random() * 2 - 1; | |
y = Math.random() * 2 - 1; | |
r = x * x + y * y; | |
} while (!r || r > 1); | |
return mean + deviation * x * Math.sqrt(-2 * Math.log(r) / r); | |
}; | |
} | |
}; | |
function d3_number(x) { | |
return x != null && !isNaN(x); | |
} | |
d3.sum = function(array, f) { | |
var s = 0, | |
n = array.length, | |
a, | |
i = -1; | |
if (arguments.length === 1) { | |
while (++i < n) if (!isNaN(a = +array[i])) s += a; | |
} else { | |
while (++i < n) if (!isNaN(a = +f.call(array, array[i], i))) s += a; | |
} | |
return s; | |
}; | |
// R-7 per <http://en.wikipedia.org/wiki/Quantile> | |
d3.quantile = function(values, p) { | |
var H = (values.length - 1) * p + 1, | |
h = Math.floor(H), | |
v = values[h - 1], | |
e = H - h; | |
return e ? v + e * (values[h] - v) : v; | |
}; | |
d3.transpose = function(matrix) { | |
return d3.zip.apply(d3, matrix); | |
}; | |
d3.zip = function() { | |
if (!(n = arguments.length)) return []; | |
for (var i = -1, m = d3.min(arguments, d3_zipLength), zips = new Array(m); ++i < m;) { | |
for (var j = -1, n, zip = zips[i] = new Array(n); ++j < n;) { | |
zip[j] = arguments[j][i]; | |
} | |
} | |
return zips; | |
}; | |
function d3_zipLength(d) { | |
return d.length; | |
} | |
d3.bisector = function(f) { | |
return { | |
left: function(a, x, lo, hi) { | |
if (arguments.length < 3) lo = 0; | |
if (arguments.length < 4) hi = a.length; | |
while (lo < hi) { | |
var mid = lo + hi >> 1; | |
if (f.call(a, a[mid], mid) < x) lo = mid + 1; | |
else hi = mid; | |
} | |
return lo; | |
}, | |
right: function(a, x, lo, hi) { | |
if (arguments.length < 3) lo = 0; | |
if (arguments.length < 4) hi = a.length; | |
while (lo < hi) { | |
var mid = lo + hi >> 1; | |
if (x < f.call(a, a[mid], mid)) hi = mid; | |
else lo = mid + 1; | |
} | |
return lo; | |
} | |
}; | |
}; | |
var d3_bisector = d3.bisector(function(d) { return d; }); | |
d3.bisectLeft = d3_bisector.left; | |
d3.bisect = d3.bisectRight = d3_bisector.right; | |
d3.first = function(array, f) { | |
var i = 0, | |
n = array.length, | |
a = array[0], | |
b; | |
if (arguments.length === 1) f = d3.ascending; | |
while (++i < n) { | |
if (f.call(array, a, b = array[i]) > 0) { | |
a = b; | |
} | |
} | |
return a; | |
}; | |
d3.last = function(array, f) { | |
var i = 0, | |
n = array.length, | |
a = array[0], | |
b; | |
if (arguments.length === 1) f = d3.ascending; | |
while (++i < n) { | |
if (f.call(array, a, b = array[i]) <= 0) { | |
a = b; | |
} | |
} | |
return a; | |
}; | |
d3.nest = function() { | |
var nest = {}, | |
keys = [], | |
sortKeys = [], | |
sortValues, | |
rollup; | |
function map(array, depth) { | |
if (depth >= keys.length) return rollup | |
? rollup.call(nest, array) : (sortValues | |
? array.sort(sortValues) | |
: array); | |
var i = -1, | |
n = array.length, | |
key = keys[depth++], | |
keyValue, | |
object, | |
valuesByKey = new d3_Map, | |
values, | |
o = {}; | |
while (++i < n) { | |
if (values = valuesByKey.get(keyValue = key(object = array[i]))) { | |
values.push(object); | |
} else { | |
valuesByKey.set(keyValue, [object]); | |
} | |
} | |
valuesByKey.forEach(function(keyValue) { | |
o[keyValue] = map(valuesByKey.get(keyValue), depth); | |
}); | |
return o; | |
} | |
function entries(map, depth) { | |
if (depth >= keys.length) return map; | |
var a = [], | |
sortKey = sortKeys[depth++], | |
key; | |
for (key in map) { | |
a.push({key: key, values: entries(map[key], depth)}); | |
} | |
if (sortKey) a.sort(function(a, b) { | |
return sortKey(a.key, b.key); | |
}); | |
return a; | |
} | |
nest.map = function(array) { | |
return map(array, 0); | |
}; | |
nest.entries = function(array) { | |
return entries(map(array, 0), 0); | |
}; | |
nest.key = function(d) { | |
keys.push(d); | |
return nest; | |
}; | |
// Specifies the order for the most-recently specified key. | |
// Note: only applies to entries. Map keys are unordered! | |
nest.sortKeys = function(order) { | |
sortKeys[keys.length - 1] = order; | |
return nest; | |
}; | |
// Specifies the order for leaf values. | |
// Applies to both maps and entries array. | |
nest.sortValues = function(order) { | |
sortValues = order; | |
return nest; | |
}; | |
nest.rollup = function(f) { | |
rollup = f; | |
return nest; | |
}; | |
return nest; | |
}; | |
d3.keys = function(map) { | |
var keys = []; | |
for (var key in map) keys.push(key); | |
return keys; | |
}; | |
d3.values = function(map) { | |
var values = []; | |
for (var key in map) values.push(map[key]); | |
return values; | |
}; | |
d3.entries = function(map) { | |
var entries = []; | |
for (var key in map) entries.push({key: key, value: map[key]}); | |
return entries; | |
}; | |
d3.permute = function(array, indexes) { | |
var permutes = [], | |
i = -1, | |
n = indexes.length; | |
while (++i < n) permutes[i] = array[indexes[i]]; | |
return permutes; | |
}; | |
d3.merge = function(arrays) { | |
return Array.prototype.concat.apply([], arrays); | |
}; | |
d3.split = function(array, f) { | |
var arrays = [], | |
values = [], | |
value, | |
i = -1, | |
n = array.length; | |
if (arguments.length < 2) f = d3_splitter; | |
while (++i < n) { | |
if (f.call(values, value = array[i], i)) { | |
values = []; | |
} else { | |
if (!values.length) arrays.push(values); | |
values.push(value); | |
} | |
} | |
return arrays; | |
}; | |
function d3_splitter(d) { | |
return d == null; | |
} | |
function d3_collapse(s) { | |
return s.replace(/(^\s+)|(\s+$)/g, "").replace(/\s+/g, " "); | |
} | |
d3.range = function(start, stop, step) { | |
if (arguments.length < 3) { | |
step = 1; | |
if (arguments.length < 2) { | |
stop = start; | |
start = 0; | |
} | |
} | |
if ((stop - start) / step === Infinity) throw new Error("infinite range"); | |
var range = [], | |
k = d3_range_integerScale(Math.abs(step)), | |
i = -1, | |
j; | |
start *= k, stop *= k, step *= k; | |
if (step < 0) while ((j = start + step * ++i) > stop) range.push(j / k); | |
else while ((j = start + step * ++i) < stop) range.push(j / k); | |
return range; | |
}; | |
function d3_range_integerScale(x) { | |
var k = 1; | |
while (x * k % 1) k *= 10; | |
return k; | |
} | |
d3.requote = function(s) { | |
return s.replace(d3_requote_re, "\\$&"); | |
}; | |
var d3_requote_re = /[\\\^\$\*\+\?\|\[\]\(\)\.\{\}]/g; | |
d3.round = function(x, n) { | |
return n | |
? Math.round(x * (n = Math.pow(10, n))) / n | |
: Math.round(x); | |
}; | |
d3.xhr = function(url, mime, callback) { | |
var req = new XMLHttpRequest; | |
if (arguments.length < 3) callback = mime, mime = null; | |
else if (mime && req.overrideMimeType) req.overrideMimeType(mime); | |
req.open("GET", url, true); | |
if (mime) req.setRequestHeader("Accept", mime); | |
req.onreadystatechange = function() { | |
if (req.readyState === 4) { | |
var s = req.status; | |
callback(s >= 200 && s < 300 || s === 304 ? req : null); | |
} | |
}; | |
req.send(null); | |
}; | |
d3.text = function(url, mime, callback) { | |
function ready(req) { | |
callback(req && req.responseText); | |
} | |
if (arguments.length < 3) { | |
callback = mime; | |
mime = null; | |
} | |
d3.xhr(url, mime, ready); | |
}; | |
d3.json = function(url, callback) { | |
d3.text(url, "application/json", function(text) { | |
callback(text ? JSON.parse(text) : null); | |
}); | |
}; | |
d3.html = function(url, callback) { | |
d3.text(url, "text/html", function(text) { | |
if (text != null) { // Treat empty string as valid HTML. | |
var range = document.createRange(); | |
range.selectNode(document.body); | |
text = range.createContextualFragment(text); | |
} | |
callback(text); | |
}); | |
}; | |
d3.xml = function(url, mime, callback) { | |
function ready(req) { | |
callback(req && req.responseXML); | |
} | |
if (arguments.length < 3) { | |
callback = mime; | |
mime = null; | |
} | |
d3.xhr(url, mime, ready); | |
}; | |
var d3_nsPrefix = { | |
svg: "http://www.w3.org/2000/svg", | |
xhtml: "http://www.w3.org/1999/xhtml", | |
xlink: "http://www.w3.org/1999/xlink", | |
xml: "http://www.w3.org/XML/1998/namespace", | |
xmlns: "http://www.w3.org/2000/xmlns/" | |
}; | |
d3.ns = { | |
prefix: d3_nsPrefix, | |
qualify: function(name) { | |
var i = name.indexOf(":"), | |
prefix = name; | |
if (i >= 0) { | |
prefix = name.substring(0, i); | |
name = name.substring(i + 1); | |
} | |
return d3_nsPrefix.hasOwnProperty(prefix) | |
? {space: d3_nsPrefix[prefix], local: name} | |
: name; | |
} | |
}; | |
d3.dispatch = function() { | |
var dispatch = new d3_dispatch, | |
i = -1, | |
n = arguments.length; | |
while (++i < n) dispatch[arguments[i]] = d3_dispatch_event(dispatch); | |
return dispatch; | |
}; | |
function d3_dispatch() {} | |
d3_dispatch.prototype.on = function(type, listener) { | |
var i = type.indexOf("."), | |
name = ""; | |
// Extract optional namespace, e.g., "click.foo" | |
if (i > 0) { | |
name = type.substring(i + 1); | |
type = type.substring(0, i); | |
} | |
return arguments.length < 2 | |
? this[type].on(name) | |
: this[type].on(name, listener); | |
}; | |
function d3_dispatch_event(dispatch) { | |
var listeners = [], | |
listenerByName = new d3_Map; | |
function event() { | |
var z = listeners, // defensive reference | |
i = -1, | |
n = z.length, | |
l; | |
while (++i < n) if (l = z[i].on) l.apply(this, arguments); | |
return dispatch; | |
} | |
event.on = function(name, listener) { | |
var l = listenerByName.get(name), | |
i; | |
// return the current listener, if any | |
if (arguments.length < 2) return l && l.on; | |
// remove the old listener, if any (with copy-on-write) | |
if (l) { | |
l.on = null; | |
listeners = listeners.slice(0, i = listeners.indexOf(l)).concat(listeners.slice(i + 1)); | |
listenerByName.remove(name); | |
} | |
// add the new listener, if any | |
if (listener) listeners.push(listenerByName.set(name, {on: listener})); | |
return dispatch; | |
}; | |
return event; | |
} | |
// TODO align | |
d3.format = function(specifier) { | |
var match = d3_format_re.exec(specifier), | |
fill = match[1] || " ", | |
sign = match[3] || "", | |
zfill = match[5], | |
width = +match[6], | |
comma = match[7], | |
precision = match[8], | |
type = match[9], | |
scale = 1, | |
suffix = "", | |
integer = false; | |
if (precision) precision = +precision.substring(1); | |
if (zfill) { | |
fill = "0"; // TODO align = "="; | |
if (comma) width -= Math.floor((width - 1) / 4); | |
} | |
switch (type) { | |
case "n": comma = true; type = "g"; break; | |
case "%": scale = 100; suffix = "%"; type = "f"; break; | |
case "p": scale = 100; suffix = "%"; type = "r"; break; | |
case "d": integer = true; precision = 0; break; | |
case "s": scale = -1; type = "r"; break; | |
} | |
// If no precision is specified for r, fallback to general notation. | |
if (type == "r" && !precision) type = "g"; | |
type = d3_format_types.get(type) || d3_format_typeDefault; | |
return function(value) { | |
// Return the empty string for floats formatted as ints. | |
if (integer && (value % 1)) return ""; | |
// Convert negative to positive, and record the sign prefix. | |
var negative = (value < 0) && (value = -value) ? "\u2212" : sign; | |
// Apply the scale, computing it from the value's exponent for si format. | |
if (scale < 0) { | |
var prefix = d3.formatPrefix(value, precision); | |
value *= prefix.scale; | |
suffix = prefix.symbol; | |
} else { | |
value *= scale; | |
} | |
// Convert to the desired precision. | |
value = type(value, precision); | |
// If the fill character is 0, the sign and group is applied after the fill. | |
if (zfill) { | |
var length = value.length + negative.length; | |
if (length < width) value = new Array(width - length + 1).join(fill) + value; | |
if (comma) value = d3_format_group(value); | |
value = negative + value; | |
} | |
// Otherwise (e.g., space-filling), the sign and group is applied before. | |
else { | |
if (comma) value = d3_format_group(value); | |
value = negative + value; | |
var length = value.length; | |
if (length < width) value = new Array(width - length + 1).join(fill) + value; | |
} | |
return value + suffix; | |
}; | |
}; | |
// [[fill]align][sign][#][0][width][,][.precision][type] | |
var d3_format_re = /(?:([^{])?([<>=^]))?([+\- ])?(#)?(0)?([0-9]+)?(,)?(\.[0-9]+)?([a-zA-Z%])?/; | |
var d3_format_types = d3.map({ | |
g: function(x, p) { return x.toPrecision(p); }, | |
e: function(x, p) { return x.toExponential(p); }, | |
f: function(x, p) { return x.toFixed(p); }, | |
r: function(x, p) { return d3.round(x, p = d3_format_precision(x, p)).toFixed(Math.max(0, Math.min(20, p))); } | |
}); | |
function d3_format_precision(x, p) { | |
return p - (x ? 1 + Math.floor(Math.log(x + Math.pow(10, 1 + Math.floor(Math.log(x) / Math.LN10) - p)) / Math.LN10) : 1); | |
} | |
function d3_format_typeDefault(x) { | |
return x + ""; | |
} | |
// Apply comma grouping for thousands. | |
function d3_format_group(value) { | |
var i = value.lastIndexOf("."), | |
f = i >= 0 ? value.substring(i) : (i = value.length, ""), | |
t = []; | |
while (i > 0) t.push(value.substring(i -= 3, i + 3)); | |
return t.reverse().join(",") + f; | |
} | |
var d3_formatPrefixes = ["y","z","a","f","p","n","μ","m","","k","M","G","T","P","E","Z","Y"].map(d3_formatPrefix); | |
d3.formatPrefix = function(value, precision) { | |
var i = 0; | |
if (value) { | |
if (value < 0) value *= -1; | |
if (precision) value = d3.round(value, d3_format_precision(value, precision)); | |
i = 1 + Math.floor(1e-12 + Math.log(value) / Math.LN10); | |
i = Math.max(-24, Math.min(24, Math.floor((i <= 0 ? i + 1 : i - 1) / 3) * 3)); | |
} | |
return d3_formatPrefixes[8 + i / 3]; | |
}; | |
function d3_formatPrefix(d, i) { | |
return { | |
scale: Math.pow(10, (8 - i) * 3), | |
symbol: d | |
}; | |
} | |
/* | |
* TERMS OF USE - EASING EQUATIONS | |
* | |
* Open source under the BSD License. | |
* | |
* Copyright 2001 Robert Penner | |
* All rights reserved. | |
* | |
* Redistribution and use in source and binary forms, with or without | |
* modification, are permitted provided that the following conditions are met: | |
* | |
* - Redistributions of source code must retain the above copyright notice, this | |
* list of conditions and the following disclaimer. | |
* | |
* - Redistributions in binary form must reproduce the above copyright notice, | |
* this list of conditions and the following disclaimer in the documentation | |
* and/or other materials provided with the distribution. | |
* | |
* - Neither the name of the author nor the names of contributors may be used to | |
* endorse or promote products derived from this software without specific | |
* prior written permission. | |
* | |
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" | |
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE | |
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE | |
* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE | |
* LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR | |
* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF | |
* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS | |
* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN | |
* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) | |
* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE | |
* POSSIBILITY OF SUCH DAMAGE. | |
*/ | |
var d3_ease_quad = d3_ease_poly(2), | |
d3_ease_cubic = d3_ease_poly(3), | |
d3_ease_default = function() { return d3_ease_identity; }; | |
var d3_ease = d3.map({ | |
linear: d3_ease_default, | |
poly: d3_ease_poly, | |
quad: function() { return d3_ease_quad; }, | |
cubic: function() { return d3_ease_cubic; }, | |
sin: function() { return d3_ease_sin; }, | |
exp: function() { return d3_ease_exp; }, | |
circle: function() { return d3_ease_circle; }, | |
elastic: d3_ease_elastic, | |
back: d3_ease_back, | |
bounce: function() { return d3_ease_bounce; } | |
}); | |
var d3_ease_mode = d3.map({ | |
"in": d3_ease_identity, | |
"out": d3_ease_reverse, | |
"in-out": d3_ease_reflect, | |
"out-in": function(f) { return d3_ease_reflect(d3_ease_reverse(f)); } | |
}); | |
d3.ease = function(name) { | |
var i = name.indexOf("-"), | |
t = i >= 0 ? name.substring(0, i) : name, | |
m = i >= 0 ? name.substring(i + 1) : "in"; | |
t = d3_ease.get(t) || d3_ease_default; | |
m = d3_ease_mode.get(m) || d3_ease_identity; | |
return d3_ease_clamp(m(t.apply(null, Array.prototype.slice.call(arguments, 1)))); | |
}; | |
function d3_ease_clamp(f) { | |
return function(t) { | |
return t <= 0 ? 0 : t >= 1 ? 1 : f(t); | |
}; | |
} | |
function d3_ease_reverse(f) { | |
return function(t) { | |
return 1 - f(1 - t); | |
}; | |
} | |
function d3_ease_reflect(f) { | |
return function(t) { | |
return .5 * (t < .5 ? f(2 * t) : (2 - f(2 - 2 * t))); | |
}; | |
} | |
function d3_ease_identity(t) { | |
return t; | |
} | |
function d3_ease_poly(e) { | |
return function(t) { | |
return Math.pow(t, e); | |
}; | |
} | |
function d3_ease_sin(t) { | |
return 1 - Math.cos(t * Math.PI / 2); | |
} | |
function d3_ease_exp(t) { | |
return Math.pow(2, 10 * (t - 1)); | |
} | |
function d3_ease_circle(t) { | |
return 1 - Math.sqrt(1 - t * t); | |
} | |
function d3_ease_elastic(a, p) { | |
var s; | |
if (arguments.length < 2) p = 0.45; | |
if (arguments.length < 1) { a = 1; s = p / 4; } | |
else s = p / (2 * Math.PI) * Math.asin(1 / a); | |
return function(t) { | |
return 1 + a * Math.pow(2, 10 * -t) * Math.sin((t - s) * 2 * Math.PI / p); | |
}; | |
} | |
function d3_ease_back(s) { | |
if (!s) s = 1.70158; | |
return function(t) { | |
return t * t * ((s + 1) * t - s); | |
}; | |
} | |
function d3_ease_bounce(t) { | |
return t < 1 / 2.75 ? 7.5625 * t * t | |
: t < 2 / 2.75 ? 7.5625 * (t -= 1.5 / 2.75) * t + .75 | |
: t < 2.5 / 2.75 ? 7.5625 * (t -= 2.25 / 2.75) * t + .9375 | |
: 7.5625 * (t -= 2.625 / 2.75) * t + .984375; | |
} | |
d3.event = null; | |
function d3_eventCancel() { | |
d3.event.stopPropagation(); | |
d3.event.preventDefault(); | |
} | |
function d3_eventSource() { | |
var e = d3.event, s; | |
while (s = e.sourceEvent) e = s; | |
return e; | |
} | |
// Like d3.dispatch, but for custom events abstracting native UI events. These | |
// events have a target component (such as a brush), a target element (such as | |
// the svg:g element containing the brush) and the standard arguments `d` (the | |
// target element's data) and `i` (the selection index of the target element). | |
function d3_eventDispatch(target) { | |
var dispatch = new d3_dispatch, | |
i = 0, | |
n = arguments.length; | |
while (++i < n) dispatch[arguments[i]] = d3_dispatch_event(dispatch); | |
// Creates a dispatch context for the specified `thiz` (typically, the target | |
// DOM element that received the source event) and `argumentz` (typically, the | |
// data `d` and index `i` of the target element). The returned function can be | |
// used to dispatch an event to any registered listeners; the function takes a | |
// single argument as input, being the event to dispatch. The event must have | |
// a "type" attribute which corresponds to a type registered in the | |
// constructor. This context will automatically populate the "sourceEvent" and | |
// "target" attributes of the event, as well as setting the `d3.event` global | |
// for the duration of the notification. | |
dispatch.of = function(thiz, argumentz) { | |
return function(e1) { | |
try { | |
var e0 = | |
e1.sourceEvent = d3.event; | |
e1.target = target; | |
d3.event = e1; | |
dispatch[e1.type].apply(thiz, argumentz); | |
} finally { | |
d3.event = e0; | |
} | |
}; | |
}; | |
return dispatch; | |
} | |
d3.interpolate = function(a, b) { | |
var i = d3.interpolators.length, f; | |
while (--i >= 0 && !(f = d3.interpolators[i](a, b))); | |
return f; | |
}; | |
d3.interpolateNumber = function(a, b) { | |
b -= a; | |
return function(t) { return a + b * t; }; | |
}; | |
d3.interpolateRound = function(a, b) { | |
b -= a; | |
return function(t) { return Math.round(a + b * t); }; | |
}; | |
d3.interpolateString = function(a, b) { | |
var m, // current match | |
i, // current index | |
j, // current index (for coallescing) | |
s0 = 0, // start index of current string prefix | |
s1 = 0, // end index of current string prefix | |
s = [], // string constants and placeholders | |
q = [], // number interpolators | |
n, // q.length | |
o; | |
// Reset our regular expression! | |
d3_interpolate_number.lastIndex = 0; | |
// Find all numbers in b. | |
for (i = 0; m = d3_interpolate_number.exec(b); ++i) { | |
if (m.index) s.push(b.substring(s0, s1 = m.index)); | |
q.push({i: s.length, x: m[0]}); | |
s.push(null); | |
s0 = d3_interpolate_number.lastIndex; | |
} | |
if (s0 < b.length) s.push(b.substring(s0)); | |
// Find all numbers in a. | |
for (i = 0, n = q.length; (m = d3_interpolate_number.exec(a)) && i < n; ++i) { | |
o = q[i]; | |
if (o.x == m[0]) { // The numbers match, so coallesce. | |
if (o.i) { | |
if (s[o.i + 1] == null) { // This match is followed by another number. | |
s[o.i - 1] += o.x; | |
s.splice(o.i, 1); | |
for (j = i + 1; j < n; ++j) q[j].i--; | |
} else { // This match is followed by a string, so coallesce twice. | |
s[o.i - 1] += o.x + s[o.i + 1]; | |
s.splice(o.i, 2); | |
for (j = i + 1; j < n; ++j) q[j].i -= 2; | |
} | |
} else { | |
if (s[o.i + 1] == null) { // This match is followed by another number. | |
s[o.i] = o.x; | |
} else { // This match is followed by a string, so coallesce twice. | |
s[o.i] = o.x + s[o.i + 1]; | |
s.splice(o.i + 1, 1); | |
for (j = i + 1; j < n; ++j) q[j].i--; | |
} | |
} | |
q.splice(i, 1); | |
n--; | |
i--; | |
} else { | |
o.x = d3.interpolateNumber(parseFloat(m[0]), parseFloat(o.x)); | |
} | |
} | |
// Remove any numbers in b not found in a. | |
while (i < n) { | |
o = q.pop(); | |
if (s[o.i + 1] == null) { // This match is followed by another number. | |
s[o.i] = o.x; | |
} else { // This match is followed by a string, so coallesce twice. | |
s[o.i] = o.x + s[o.i + 1]; | |
s.splice(o.i + 1, 1); | |
} | |
n--; | |
} | |
// Special optimization for only a single match. | |
if (s.length === 1) { | |
return s[0] == null ? q[0].x : function() { return b; }; | |
} | |
// Otherwise, interpolate each of the numbers and rejoin the string. | |
return function(t) { | |
for (i = 0; i < n; ++i) s[(o = q[i]).i] = o.x(t); | |
return s.join(""); | |
}; | |
}; | |
d3.interpolateTransform = function(a, b) { | |
var s = [], // string constants and placeholders | |
q = [], // number interpolators | |
n, | |
A = d3.transform(a), | |
B = d3.transform(b), | |
ta = A.translate, | |
tb = B.translate, | |
ra = A.rotate, | |
rb = B.rotate, | |
wa = A.skew, | |
wb = B.skew, | |
ka = A.scale, | |
kb = B.scale; | |
if (ta[0] != tb[0] || ta[1] != tb[1]) { | |
s.push("translate(", null, ",", null, ")"); | |
q.push({i: 1, x: d3.interpolateNumber(ta[0], tb[0])}, {i: 3, x: d3.interpolateNumber(ta[1], tb[1])}); | |
} else if (tb[0] || tb[1]) { | |
s.push("translate(" + tb + ")"); | |
} else { | |
s.push(""); | |
} | |
if (ra != rb) { | |
q.push({i: s.push(s.pop() + "rotate(", null, ")") - 2, x: d3.interpolateNumber(ra, rb)}); | |
} else if (rb) { | |
s.push(s.pop() + "rotate(" + rb + ")"); | |
} | |
if (wa != wb) { | |
q.push({i: s.push(s.pop() + "skewX(", null, ")") - 2, x: d3.interpolateNumber(wa, wb)}); | |
} else if (wb) { | |
s.push(s.pop() + "skewX(" + wb + ")"); | |
} | |
if (ka[0] != kb[0] || ka[1] != kb[1]) { | |
n = s.push(s.pop() + "scale(", null, ",", null, ")"); | |
q.push({i: n - 4, x: d3.interpolateNumber(ka[0], kb[0])}, {i: n - 2, x: d3.interpolateNumber(ka[1], kb[1])}); | |
} else if (kb[0] != 1 || kb[1] != 1) { | |
s.push(s.pop() + "scale(" + kb + ")"); | |
} | |
n = q.length; | |
return function(t) { | |
var i = -1, o; | |
while (++i < n) s[(o = q[i]).i] = o.x(t); | |
return s.join(""); | |
}; | |
}; | |
d3.interpolateRgb = function(a, b) { | |
a = d3.rgb(a); | |
b = d3.rgb(b); | |
var ar = a.r, | |
ag = a.g, | |
ab = a.b, | |
br = b.r - ar, | |
bg = b.g - ag, | |
bb = b.b - ab; | |
return function(t) { | |
return "#" | |
+ d3_rgb_hex(Math.round(ar + br * t)) | |
+ d3_rgb_hex(Math.round(ag + bg * t)) | |
+ d3_rgb_hex(Math.round(ab + bb * t)); | |
}; | |
}; | |
// interpolates HSL space, but outputs RGB string (for compatibility) | |
d3.interpolateHsl = function(a, b) { | |
a = d3.hsl(a); | |
b = d3.hsl(b); | |
var h0 = a.h, | |
s0 = a.s, | |
l0 = a.l, | |
h1 = b.h - h0, | |
s1 = b.s - s0, | |
l1 = b.l - l0; | |
return function(t) { | |
return d3_hsl_rgb(h0 + h1 * t, s0 + s1 * t, l0 + l1 * t).toString(); | |
}; | |
}; | |
d3.interpolateArray = function(a, b) { | |
var x = [], | |
c = [], | |
na = a.length, | |
nb = b.length, | |
n0 = Math.min(a.length, b.length), | |
i; | |
for (i = 0; i < n0; ++i) x.push(d3.interpolate(a[i], b[i])); | |
for (; i < na; ++i) c[i] = a[i]; | |
for (; i < nb; ++i) c[i] = b[i]; | |
return function(t) { | |
for (i = 0; i < n0; ++i) c[i] = x[i](t); | |
return c; | |
}; | |
}; | |
d3.interpolateObject = function(a, b) { | |
var i = {}, | |
c = {}, | |
k; | |
for (k in a) { | |
if (k in b) { | |
i[k] = d3_interpolateByName(k)(a[k], b[k]); | |
} else { | |
c[k] = a[k]; | |
} | |
} | |
for (k in b) { | |
if (!(k in a)) { | |
c[k] = b[k]; | |
} | |
} | |
return function(t) { | |
for (k in i) c[k] = i[k](t); | |
return c; | |
}; | |
} | |
var d3_interpolate_number = /[-+]?(?:\d+\.?\d*|\.?\d+)(?:[eE][-+]?\d+)?/g; | |
function d3_interpolateByName(n) { | |
return n == "transform" | |
? d3.interpolateTransform | |
: d3.interpolate; | |
} | |
d3.interpolators = [ | |
d3.interpolateObject, | |
function(a, b) { return (b instanceof Array) && d3.interpolateArray(a, b); }, | |
function(a, b) { return (typeof a === "string" || typeof b === "string") && d3.interpolateString(a + "", b + ""); }, | |
function(a, b) { return (typeof b === "string" ? d3_rgb_names.has(b) || /^(#|rgb\(|hsl\()/.test(b) : b instanceof d3_Rgb || b instanceof d3_Hsl) && d3.interpolateRgb(a, b); }, | |
function(a, b) { return !isNaN(a = +a) && !isNaN(b = +b) && d3.interpolateNumber(a, b); } | |
]; | |
function d3_uninterpolateNumber(a, b) { | |
b = b - (a = +a) ? 1 / (b - a) : 0; | |
return function(x) { return (x - a) * b; }; | |
} | |
function d3_uninterpolateClamp(a, b) { | |
b = b - (a = +a) ? 1 / (b - a) : 0; | |
return function(x) { return Math.max(0, Math.min(1, (x - a) * b)); }; | |
} | |
d3.rgb = function(r, g, b) { | |
return arguments.length === 1 | |
? (r instanceof d3_Rgb ? d3_rgb(r.r, r.g, r.b) | |
: d3_rgb_parse("" + r, d3_rgb, d3_hsl_rgb)) | |
: d3_rgb(~~r, ~~g, ~~b); | |
}; | |
function d3_rgb(r, g, b) { | |
return new d3_Rgb(r, g, b); | |
} | |
function d3_Rgb(r, g, b) { | |
this.r = r; | |
this.g = g; | |
this.b = b; | |
} | |
d3_Rgb.prototype.brighter = function(k) { | |
k = Math.pow(0.7, arguments.length ? k : 1); | |
var r = this.r, | |
g = this.g, | |
b = this.b, | |
i = 30; | |
if (!r && !g && !b) return d3_rgb(i, i, i); | |
if (r && r < i) r = i; | |
if (g && g < i) g = i; | |
if (b && b < i) b = i; | |
return d3_rgb( | |
Math.min(255, Math.floor(r / k)), | |
Math.min(255, Math.floor(g / k)), | |
Math.min(255, Math.floor(b / k))); | |
}; | |
d3_Rgb.prototype.darker = function(k) { | |
k = Math.pow(0.7, arguments.length ? k : 1); | |
return d3_rgb( | |
Math.floor(k * this.r), | |
Math.floor(k * this.g), | |
Math.floor(k * this.b)); | |
}; | |
d3_Rgb.prototype.hsl = function() { | |
return d3_rgb_hsl(this.r, this.g, this.b); | |
}; | |
d3_Rgb.prototype.toString = function() { | |
return "#" + d3_rgb_hex(this.r) + d3_rgb_hex(this.g) + d3_rgb_hex(this.b); | |
}; | |
function d3_rgb_hex(v) { | |
return v < 0x10 | |
? "0" + Math.max(0, v).toString(16) | |
: Math.min(255, v).toString(16); | |
} | |
function d3_rgb_parse(format, rgb, hsl) { | |
var r = 0, // red channel; int in [0, 255] | |
g = 0, // green channel; int in [0, 255] | |
b = 0, // blue channel; int in [0, 255] | |
m1, // CSS color specification match | |
m2, // CSS color specification type (e.g., rgb) | |
name; | |
/* Handle hsl, rgb. */ | |
m1 = /([a-z]+)\((.*)\)/i.exec(format); | |
if (m1) { | |
m2 = m1[2].split(","); | |
switch (m1[1]) { | |
case "hsl": { | |
return hsl( | |
parseFloat(m2[0]), // degrees | |
parseFloat(m2[1]) / 100, // percentage | |
parseFloat(m2[2]) / 100 // percentage | |
); | |
} | |
case "rgb": { | |
return rgb( | |
d3_rgb_parseNumber(m2[0]), | |
d3_rgb_parseNumber(m2[1]), | |
d3_rgb_parseNumber(m2[2]) | |
); | |
} | |
} | |
} | |
/* Named colors. */ | |
if (name = d3_rgb_names.get(format)) return rgb(name.r, name.g, name.b); | |
/* Hexadecimal colors: #rgb and #rrggbb. */ | |
if (format != null && format.charAt(0) === "#") { | |
if (format.length === 4) { | |
r = format.charAt(1); r += r; | |
g = format.charAt(2); g += g; | |
b = format.charAt(3); b += b; | |
} else if (format.length === 7) { | |
r = format.substring(1, 3); | |
g = format.substring(3, 5); | |
b = format.substring(5, 7); | |
} | |
r = parseInt(r, 16); | |
g = parseInt(g, 16); | |
b = parseInt(b, 16); | |
} | |
return rgb(r, g, b); | |
} | |
function d3_rgb_hsl(r, g, b) { | |
var min = Math.min(r /= 255, g /= 255, b /= 255), | |
max = Math.max(r, g, b), | |
d = max - min, | |
h, | |
s, | |
l = (max + min) / 2; | |
if (d) { | |
s = l < .5 ? d / (max + min) : d / (2 - max - min); | |
if (r == max) h = (g - b) / d + (g < b ? 6 : 0); | |
else if (g == max) h = (b - r) / d + 2; | |
else h = (r - g) / d + 4; | |
h *= 60; | |
} else { | |
s = h = 0; | |
} | |
return d3_hsl(h, s, l); | |
} | |
function d3_rgb_parseNumber(c) { // either integer or percentage | |
var f = parseFloat(c); | |
return c.charAt(c.length - 1) === "%" ? Math.round(f * 2.55) : f; | |
} | |
var d3_rgb_names = d3.map({ | |
aliceblue: "#f0f8ff", | |
antiquewhite: "#faebd7", | |
aqua: "#00ffff", | |
aquamarine: "#7fffd4", | |
azure: "#f0ffff", | |
beige: "#f5f5dc", | |
bisque: "#ffe4c4", | |
black: "#000000", | |
blanchedalmond: "#ffebcd", | |
blue: "#0000ff", | |
blueviolet: "#8a2be2", | |
brown: "#a52a2a", | |
burlywood: "#deb887", | |
cadetblue: "#5f9ea0", | |
chartreuse: "#7fff00", | |
chocolate: "#d2691e", | |
coral: "#ff7f50", | |
cornflowerblue: "#6495ed", | |
cornsilk: "#fff8dc", | |
crimson: "#dc143c", | |
cyan: "#00ffff", | |
darkblue: "#00008b", | |
darkcyan: "#008b8b", | |
darkgoldenrod: "#b8860b", | |
darkgray: "#a9a9a9", | |
darkgreen: "#006400", | |
darkgrey: "#a9a9a9", | |
darkkhaki: "#bdb76b", | |
darkmagenta: "#8b008b", | |
darkolivegreen: "#556b2f", | |
darkorange: "#ff8c00", | |
darkorchid: "#9932cc", | |
darkred: "#8b0000", | |
darksalmon: "#e9967a", | |
darkseagreen: "#8fbc8f", | |
darkslateblue: "#483d8b", | |
darkslategray: "#2f4f4f", | |
darkslategrey: "#2f4f4f", | |
darkturquoise: "#00ced1", | |
darkviolet: "#9400d3", | |
deeppink: "#ff1493", | |
deepskyblue: "#00bfff", | |
dimgray: "#696969", | |
dimgrey: "#696969", | |
dodgerblue: "#1e90ff", | |
firebrick: "#b22222", | |
floralwhite: "#fffaf0", | |
forestgreen: "#228b22", | |
fuchsia: "#ff00ff", | |
gainsboro: "#dcdcdc", | |
ghostwhite: "#f8f8ff", | |
gold: "#ffd700", | |
goldenrod: "#daa520", | |
gray: "#808080", | |
green: "#008000", | |
greenyellow: "#adff2f", | |
grey: "#808080", | |
honeydew: "#f0fff0", | |
hotpink: "#ff69b4", | |
indianred: "#cd5c5c", | |
indigo: "#4b0082", | |
ivory: "#fffff0", | |
khaki: "#f0e68c", | |
lavender: "#e6e6fa", | |
lavenderblush: "#fff0f5", | |
lawngreen: "#7cfc00", | |
lemonchiffon: "#fffacd", | |
lightblue: "#add8e6", | |
lightcoral: "#f08080", | |
lightcyan: "#e0ffff", | |
lightgoldenrodyellow: "#fafad2", | |
lightgray: "#d3d3d3", | |
lightgreen: "#90ee90", | |
lightgrey: "#d3d3d3", | |
lightpink: "#ffb6c1", | |
lightsalmon: "#ffa07a", | |
lightseagreen: "#20b2aa", | |
lightskyblue: "#87cefa", | |
lightslategray: "#778899", | |
lightslategrey: "#778899", | |
lightsteelblue: "#b0c4de", | |
lightyellow: "#ffffe0", | |
lime: "#00ff00", | |
limegreen: "#32cd32", | |
linen: "#faf0e6", | |
magenta: "#ff00ff", | |
maroon: "#800000", | |
mediumaquamarine: "#66cdaa", | |
mediumblue: "#0000cd", | |
mediumorchid: "#ba55d3", | |
mediumpurple: "#9370db", | |
mediumseagreen: "#3cb371", | |
mediumslateblue: "#7b68ee", | |
mediumspringgreen: "#00fa9a", | |
mediumturquoise: "#48d1cc", | |
mediumvioletred: "#c71585", | |
midnightblue: "#191970", | |
mintcream: "#f5fffa", | |
mistyrose: "#ffe4e1", | |
moccasin: "#ffe4b5", | |
navajowhite: "#ffdead", | |
navy: "#000080", | |
oldlace: "#fdf5e6", | |
olive: "#808000", | |
olivedrab: "#6b8e23", | |
orange: "#ffa500", | |
orangered: "#ff4500", | |
orchid: "#da70d6", | |
palegoldenrod: "#eee8aa", | |
palegreen: "#98fb98", | |
paleturquoise: "#afeeee", | |
palevioletred: "#db7093", | |
papayawhip: "#ffefd5", | |
peachpuff: "#ffdab9", | |
peru: "#cd853f", | |
pink: "#ffc0cb", | |
plum: "#dda0dd", | |
powderblue: "#b0e0e6", | |
purple: "#800080", | |
red: "#ff0000", | |
rosybrown: "#bc8f8f", | |
royalblue: "#4169e1", | |
saddlebrown: "#8b4513", | |
salmon: "#fa8072", | |
sandybrown: "#f4a460", | |
seagreen: "#2e8b57", | |
seashell: "#fff5ee", | |
sienna: "#a0522d", | |
silver: "#c0c0c0", | |
skyblue: "#87ceeb", | |
slateblue: "#6a5acd", | |
slategray: "#708090", | |
slategrey: "#708090", | |
snow: "#fffafa", | |
springgreen: "#00ff7f", | |
steelblue: "#4682b4", | |
tan: "#d2b48c", | |
teal: "#008080", | |
thistle: "#d8bfd8", | |
tomato: "#ff6347", | |
turquoise: "#40e0d0", | |
violet: "#ee82ee", | |
wheat: "#f5deb3", | |
white: "#ffffff", | |
whitesmoke: "#f5f5f5", | |
yellow: "#ffff00", | |
yellowgreen: "#9acd32" | |
}); | |
d3_rgb_names.forEach(function(key, value) { | |
d3_rgb_names.set(key, d3_rgb_parse(value, d3_rgb, d3_hsl_rgb)); | |
}); | |
d3.hsl = function(h, s, l) { | |
return arguments.length === 1 | |
? (h instanceof d3_Hsl ? d3_hsl(h.h, h.s, h.l) | |
: d3_rgb_parse("" + h, d3_rgb_hsl, d3_hsl)) | |
: d3_hsl(+h, +s, +l); | |
}; | |
function d3_hsl(h, s, l) { | |
return new d3_Hsl(h, s, l); | |
} | |
function d3_Hsl(h, s, l) { | |
this.h = h; | |
this.s = s; | |
this.l = l; | |
} | |
d3_Hsl.prototype.brighter = function(k) { | |
k = Math.pow(0.7, arguments.length ? k : 1); | |
return d3_hsl(this.h, this.s, this.l / k); | |
}; | |
d3_Hsl.prototype.darker = function(k) { | |
k = Math.pow(0.7, arguments.length ? k : 1); | |
return d3_hsl(this.h, this.s, k * this.l); | |
}; | |
d3_Hsl.prototype.rgb = function() { | |
return d3_hsl_rgb(this.h, this.s, this.l); | |
}; | |
d3_Hsl.prototype.toString = function() { | |
return this.rgb().toString(); | |
}; | |
function d3_hsl_rgb(h, s, l) { | |
var m1, | |
m2; | |
/* Some simple corrections for h, s and l. */ | |
h = h % 360; if (h < 0) h += 360; | |
s = s < 0 ? 0 : s > 1 ? 1 : s; | |
l = l < 0 ? 0 : l > 1 ? 1 : l; | |
/* From FvD 13.37, CSS Color Module Level 3 */ | |
m2 = l <= .5 ? l * (1 + s) : l + s - l * s; | |
m1 = 2 * l - m2; | |
function v(h) { | |
if (h > 360) h -= 360; | |
else if (h < 0) h += 360; | |
if (h < 60) return m1 + (m2 - m1) * h / 60; | |
if (h < 180) return m2; | |
if (h < 240) return m1 + (m2 - m1) * (240 - h) / 60; | |
return m1; | |
} | |
function vv(h) { | |
return Math.round(v(h) * 255); | |
} | |
return d3_rgb(vv(h + 120), vv(h), vv(h - 120)); | |
} | |
function d3_selection(groups) { | |
d3_arraySubclass(groups, d3_selectionPrototype); | |
return groups; | |
} | |
var d3_select = function(s, n) { return n.querySelector(s); }, | |
d3_selectAll = function(s, n) { return n.querySelectorAll(s); }, | |
d3_selectRoot = document.documentElement, | |
d3_selectMatcher = d3_selectRoot.matchesSelector || d3_selectRoot.webkitMatchesSelector || d3_selectRoot.mozMatchesSelector || d3_selectRoot.msMatchesSelector || d3_selectRoot.oMatchesSelector, | |
d3_selectMatches = function(n, s) { return d3_selectMatcher.call(n, s); }; | |
// Prefer Sizzle, if available. | |
if (typeof Sizzle === "function") { | |
d3_select = function(s, n) { return Sizzle(s, n)[0]; }; | |
d3_selectAll = function(s, n) { return Sizzle.uniqueSort(Sizzle(s, n)); }; | |
d3_selectMatches = Sizzle.matchesSelector; | |
} | |
var d3_selectionPrototype = []; | |
d3.selection = function() { | |
return d3_selectionRoot; | |
}; | |
d3.selection.prototype = d3_selectionPrototype; | |
d3_selectionPrototype.select = function(selector) { | |
var subgroups = [], | |
subgroup, | |
subnode, | |
group, | |
node; | |
if (typeof selector !== "function") selector = d3_selection_selector(selector); | |
for (var j = -1, m = this.length; ++j < m;) { | |
subgroups.push(subgroup = []); | |
subgroup.parentNode = (group = this[j]).parentNode; | |
for (var i = -1, n = group.length; ++i < n;) { | |
if (node = group[i]) { | |
subgroup.push(subnode = selector.call(node, node.__data__, i)); | |
if (subnode && "__data__" in node) subnode.__data__ = node.__data__; | |
} else { | |
subgroup.push(null); | |
} | |
} | |
} | |
return d3_selection(subgroups); | |
}; | |
function d3_selection_selector(selector) { | |
return function() { | |
return d3_select(selector, this); | |
}; | |
} | |
d3_selectionPrototype.selectAll = function(selector) { | |
var subgroups = [], | |
subgroup, | |
node; | |
if (typeof selector !== "function") selector = d3_selection_selectorAll(selector); | |
for (var j = -1, m = this.length; ++j < m;) { | |
for (var group = this[j], i = -1, n = group.length; ++i < n;) { | |
if (node = group[i]) { | |
subgroups.push(subgroup = d3_array(selector.call(node, node.__data__, i))); | |
subgroup.parentNode = node; | |
} | |
} | |
} | |
return d3_selection(subgroups); | |
}; | |
function d3_selection_selectorAll(selector) { | |
return function() { | |
return d3_selectAll(selector, this); | |
}; | |
} | |
d3_selectionPrototype.attr = function(name, value) { | |
name = d3.ns.qualify(name); | |
// If no value is specified, return the first value. | |
if (arguments.length < 2) { | |
var node = this.node(); | |
return name.local | |
? node.getAttributeNS(name.space, name.local) | |
: node.getAttribute(name); | |
} | |
function attrNull() { | |
this.removeAttribute(name); | |
} | |
function attrNullNS() { | |
this.removeAttributeNS(name.space, name.local); | |
} | |
function attrConstant() { | |
this.setAttribute(name, value); | |
} | |
function attrConstantNS() { | |
this.setAttributeNS(name.space, name.local, value); | |
} | |
function attrFunction() { | |
var x = value.apply(this, arguments); | |
if (x == null) this.removeAttribute(name); | |
else this.setAttribute(name, x); | |
} | |
function attrFunctionNS() { | |
var x = value.apply(this, arguments); | |
if (x == null) this.removeAttributeNS(name.space, name.local); | |
else this.setAttributeNS(name.space, name.local, x); | |
} | |
return this.each(value == null | |
? (name.local ? attrNullNS : attrNull) : (typeof value === "function" | |
? (name.local ? attrFunctionNS : attrFunction) | |
: (name.local ? attrConstantNS : attrConstant))); | |
}; | |
d3_selectionPrototype.classed = function(name, value) { | |
var names = name.split(d3_selection_classedWhitespace), | |
n = names.length, | |
i = -1; | |
if (arguments.length > 1) { | |
while (++i < n) d3_selection_classed.call(this, names[i], value); | |
return this; | |
} else { | |
while (++i < n) if (!d3_selection_classed.call(this, names[i])) return false; | |
return true; | |
} | |
}; | |
var d3_selection_classedWhitespace = /\s+/g; | |
function d3_selection_classed(name, value) { | |
var re = new RegExp("(^|\\s+)" + d3.requote(name) + "(\\s+|$)", "g"); | |
// If no value is specified, return the first value. | |
if (arguments.length < 2) { | |
var node = this.node(); | |
if (c = node.classList) return c.contains(name); | |
var c = node.className; | |
re.lastIndex = 0; | |
return re.test(c.baseVal != null ? c.baseVal : c); | |
} | |
function classedAdd() { | |
if (c = this.classList) return c.add(name); | |
var c = this.className, | |
cb = c.baseVal != null, | |
cv = cb ? c.baseVal : c; | |
re.lastIndex = 0; | |
if (!re.test(cv)) { | |
cv = d3_collapse(cv + " " + name); | |
if (cb) c.baseVal = cv; | |
else this.className = cv; | |
} | |
} | |
function classedRemove() { | |
if (c = this.classList) return c.remove(name); | |
var c = this.className, | |
cb = c.baseVal != null, | |
cv = cb ? c.baseVal : c; | |
cv = d3_collapse(cv.replace(re, " ")); | |
if (cb) c.baseVal = cv; | |
else this.className = cv; | |
} | |
function classedFunction() { | |
(value.apply(this, arguments) | |
? classedAdd | |
: classedRemove).call(this); | |
} | |
return this.each(typeof value === "function" | |
? classedFunction : value | |
? classedAdd | |
: classedRemove); | |
} | |
d3_selectionPrototype.style = function(name, value, priority) { | |
if (arguments.length < 3) priority = ""; | |
// If no value is specified, return the first value. | |
if (arguments.length < 2) return window | |
.getComputedStyle(this.node(), null) | |
.getPropertyValue(name); | |
function styleNull() { | |
this.style.removeProperty(name); | |
} | |
function styleConstant() { | |
this.style.setProperty(name, value, priority); | |
} | |
function styleFunction() { | |
var x = value.apply(this, arguments); | |
if (x == null) this.style.removeProperty(name); | |
else this.style.setProperty(name, x, priority); | |
} | |
return this.each(value == null | |
? styleNull : (typeof value === "function" | |
? styleFunction : styleConstant)); | |
}; | |
d3_selectionPrototype.property = function(name, value) { | |
// If no value is specified, return the first value. | |
if (arguments.length < 2) return this.node()[name]; | |
function propertyNull() { | |
delete this[name]; | |
} | |
function propertyConstant() { | |
this[name] = value; | |
} | |
function propertyFunction() { | |
var x = value.apply(this, arguments); | |
if (x == null) delete this[name]; | |
else this[name] = x; | |
} | |
return this.each(value == null | |
? propertyNull : (typeof value === "function" | |
? propertyFunction : propertyConstant)); | |
}; | |
d3_selectionPrototype.text = function(value) { | |
return arguments.length < 1 | |
? this.node().textContent : this.each(typeof value === "function" | |
? function() { var v = value.apply(this, arguments); this.textContent = v == null ? "" : v; } : value == null | |
? function() { this.textContent = ""; } | |
: function() { this.textContent = value; }); | |
}; | |
d3_selectionPrototype.html = function(value) { | |
return arguments.length < 1 | |
? this.node().innerHTML : this.each(typeof value === "function" | |
? function() { var v = value.apply(this, arguments); this.innerHTML = v == null ? "" : v; } : value == null | |
? function() { this.innerHTML = ""; } | |
: function() { this.innerHTML = value; }); | |
}; | |
// TODO append(node)? | |
// TODO append(function)? | |
d3_selectionPrototype.append = function(name) { | |
name = d3.ns.qualify(name); | |
function append() { | |
return this.appendChild(document.createElementNS(this.namespaceURI, name)); | |
} | |
function appendNS() { | |
return this.appendChild(document.createElementNS(name.space, name.local)); | |
} | |
return this.select(name.local ? appendNS : append); | |
}; | |
// TODO insert(node, function)? | |
// TODO insert(function, string)? | |
// TODO insert(function, function)? | |
d3_selectionPrototype.insert = function(name, before) { | |
name = d3.ns.qualify(name); | |
function insert() { | |
return this.insertBefore( | |
document.createElementNS(this.namespaceURI, name), | |
d3_select(before, this)); | |
} | |
function insertNS() { | |
return this.insertBefore( | |
document.createElementNS(name.space, name.local), | |
d3_select(before, this)); | |
} | |
return this.select(name.local ? insertNS : insert); | |
}; | |
// TODO remove(selector)? | |
// TODO remove(node)? | |
// TODO remove(function)? | |
d3_selectionPrototype.remove = function() { | |
return this.each(function() { | |
var parent = this.parentNode; | |
if (parent) parent.removeChild(this); | |
}); | |
}; | |
d3_selectionPrototype.data = function(value, key) { | |
var i = -1, | |
n = this.length, | |
group, | |
node; | |
// If no value is specified, return the first value. | |
if (!arguments.length) { | |
value = new Array(n = (group = this[0]).length); | |
while (++i < n) { | |
if (node = group[i]) { | |
value[i] = node.__data__; | |
} | |
} | |
return value; | |
} | |
function bind(group, groupData) { | |
var i, | |
n = group.length, | |
m = groupData.length, | |
n0 = Math.min(n, m), | |
n1 = Math.max(n, m), | |
updateNodes = [], | |
enterNodes = [], | |
exitNodes = [], | |
node, | |
nodeData; | |
if (key) { | |
var nodeByKeyValue = new d3_Map, | |
keyValues = [], | |
keyValue, | |
j = groupData.length; | |
for (i = -1; ++i < n;) { | |
keyValue = key.call(node = group[i], node.__data__, i); | |
if (nodeByKeyValue.has(keyValue)) { | |
exitNodes[j++] = node; // duplicate key | |
} else { | |
nodeByKeyValue.set(keyValue, node); | |
} | |
keyValues.push(keyValue); | |
} | |
for (i = -1; ++i < m;) { | |
keyValue = key.call(groupData, nodeData = groupData[i], i) | |
if (nodeByKeyValue.has(keyValue)) { | |
updateNodes[i] = node = nodeByKeyValue.get(keyValue); | |
node.__data__ = nodeData; | |
enterNodes[i] = exitNodes[i] = null; | |
} else { | |
enterNodes[i] = d3_selection_dataNode(nodeData); | |
updateNodes[i] = exitNodes[i] = null; | |
} | |
nodeByKeyValue.remove(keyValue); | |
} | |
for (i = -1; ++i < n;) { | |
if (nodeByKeyValue.has(keyValues[i])) { | |
exitNodes[i] = group[i]; | |
} | |
} | |
} else { | |
for (i = -1; ++i < n0;) { | |
node = group[i]; | |
nodeData = groupData[i]; | |
if (node) { | |
node.__data__ = nodeData; | |
updateNodes[i] = node; | |
enterNodes[i] = exitNodes[i] = null; | |
} else { | |
enterNodes[i] = d3_selection_dataNode(nodeData); | |
updateNodes[i] = exitNodes[i] = null; | |
} | |
} | |
for (; i < m; ++i) { | |
enterNodes[i] = d3_selection_dataNode(groupData[i]); | |
updateNodes[i] = exitNodes[i] = null; | |
} | |
for (; i < n1; ++i) { | |
exitNodes[i] = group[i]; | |
enterNodes[i] = updateNodes[i] = null; | |
} | |
} | |
enterNodes.update | |
= updateNodes; | |
enterNodes.parentNode | |
= updateNodes.parentNode | |
= exitNodes.parentNode | |
= group.parentNode; | |
enter.push(enterNodes); | |
update.push(updateNodes); | |
exit.push(exitNodes); | |
} | |
var enter = d3_selection_enter([]), | |
update = d3_selection([]), | |
exit = d3_selection([]); | |
if (typeof value === "function") { | |
while (++i < n) { | |
bind(group = this[i], value.call(group, group.parentNode.__data__, i)); | |
} | |
} else { | |
while (++i < n) { | |
bind(group = this[i], value); | |
} | |
} | |
update.enter = function() { return enter; }; | |
update.exit = function() { return exit; }; | |
return update; | |
}; | |
function d3_selection_dataNode(data) { | |
return {__data__: data}; | |
} | |
d3_selectionPrototype.datum = | |
d3_selectionPrototype.map = function(value) { | |
return arguments.length < 1 | |
? this.property("__data__") | |
: this.property("__data__", value); | |
}; | |
d3_selectionPrototype.filter = function(filter) { | |
var subgroups = [], | |
subgroup, | |
group, | |
node; | |
if (typeof filter !== "function") filter = d3_selection_filter(filter); | |
for (var j = 0, m = this.length; j < m; j++) { | |
subgroups.push(subgroup = []); | |
subgroup.parentNode = (group = this[j]).parentNode; | |
for (var i = 0, n = group.length; i < n; i++) { | |
if ((node = group[i]) && filter.call(node, node.__data__, i)) { | |
subgroup.push(node); | |
} | |
} | |
} | |
return d3_selection(subgroups); | |
}; | |
function d3_selection_filter(selector) { | |
return function() { | |
return d3_selectMatches(this, selector); | |
}; | |
} | |
d3_selectionPrototype.order = function() { | |
for (var j = -1, m = this.length; ++j < m;) { | |
for (var group = this[j], i = group.length - 1, next = group[i], node; --i >= 0;) { | |
if (node = group[i]) { | |
if (next && next !== node.nextSibling) next.parentNode.insertBefore(node, next); | |
next = node; | |
} | |
} | |
} | |
return this; | |
}; | |
d3_selectionPrototype.sort = function(comparator) { | |
comparator = d3_selection_sortComparator.apply(this, arguments); | |
for (var j = -1, m = this.length; ++j < m;) this[j].sort(comparator); | |
return this.order(); | |
}; | |
function d3_selection_sortComparator(comparator) { | |
if (!arguments.length) comparator = d3.ascending; | |
return function(a, b) { | |
return comparator(a && a.__data__, b && b.__data__); | |
}; | |
} | |
// type can be namespaced, e.g., "click.foo" | |
// listener can be null for removal | |
d3_selectionPrototype.on = function(type, listener, capture) { | |
if (arguments.length < 3) capture = false; | |
// parse the type specifier | |
var name = "__on" + type, i = type.indexOf("."); | |
if (i > 0) type = type.substring(0, i); | |
// if called with only one argument, return the current listener | |
if (arguments.length < 2) return (i = this.node()[name]) && i._; | |
// remove the old event listener, and add the new event listener | |
return this.each(function(d, i) { | |
var node = this, | |
o = node[name]; | |
// remove the old listener, if any (using the previously-set capture) | |
if (o) { | |
node.removeEventListener(type, o, o.$); | |
delete node[name]; | |
} | |
// add the new listener, if any (remembering the capture flag) | |
if (listener) { | |
node.addEventListener(type, node[name] = l, l.$ = capture); | |
l._ = listener; // stash the unwrapped listener for get | |
} | |
// wrapped event listener that preserves i | |
function l(e) { | |
var o = d3.event; // Events can be reentrant (e.g., focus). | |
d3.event = e; | |
try { | |
listener.call(node, node.__data__, i); | |
} finally { | |
d3.event = o; | |
} | |
} | |
}); | |
}; | |
d3_selectionPrototype.each = function(callback) { | |
for (var j = -1, m = this.length; ++j < m;) { | |
for (var group = this[j], i = -1, n = group.length; ++i < n;) { | |
var node = group[i]; | |
if (node) callback.call(node, node.__data__, i, j); | |
} | |
} | |
return this; | |
}; | |
// | |
// Note: assigning to the arguments array simultaneously changes the value of | |
// the corresponding argument! | |
// | |
// TODO The `this` argument probably shouldn't be the first argument to the | |
// callback, anyway, since it's redundant. However, that will require a major | |
// version bump due to backwards compatibility, so I'm not changing it right | |
// away. | |
// | |
d3_selectionPrototype.call = function(callback) { | |
callback.apply(this, (arguments[0] = this, arguments)); | |
return this; | |
}; | |
d3_selectionPrototype.empty = function() { | |
return !this.node(); | |
}; | |
d3_selectionPrototype.node = function(callback) { | |
for (var j = 0, m = this.length; j < m; j++) { | |
for (var group = this[j], i = 0, n = group.length; i < n; i++) { | |
var node = group[i]; | |
if (node) return node; | |
} | |
} | |
return null; | |
}; | |
d3_selectionPrototype.transition = function() { | |
var subgroups = [], | |
subgroup, | |
node; | |
for (var j = -1, m = this.length; ++j < m;) { | |
subgroups.push(subgroup = []); | |
for (var group = this[j], i = -1, n = group.length; ++i < n;) { | |
subgroup.push((node = group[i]) ? {node: node, delay: d3_transitionDelay, duration: d3_transitionDuration} : null); | |
} | |
} | |
return d3_transition(subgroups, d3_transitionId || ++d3_transitionNextId, Date.now()); | |
}; | |
var d3_selectionRoot = d3_selection([[document]]); | |
d3_selectionRoot[0].parentNode = d3_selectRoot; | |
// TODO fast singleton implementation! | |
// TODO select(function) | |
d3.select = function(selector) { | |
return typeof selector === "string" | |
? d3_selectionRoot.select(selector) | |
: d3_selection([[selector]]); // assume node | |
}; | |
// TODO selectAll(function) | |
d3.selectAll = function(selector) { | |
return typeof selector === "string" | |
? d3_selectionRoot.selectAll(selector) | |
: d3_selection([d3_array(selector)]); // assume node[] | |
}; | |
function d3_selection_enter(selection) { | |
d3_arraySubclass(selection, d3_selection_enterPrototype); | |
return selection; | |
} | |
var d3_selection_enterPrototype = []; | |
d3.selection.enter = d3_selection_enter; | |
d3.selection.enter.prototype = d3_selection_enterPrototype; | |
d3_selection_enterPrototype.append = d3_selectionPrototype.append; | |
d3_selection_enterPrototype.insert = d3_selectionPrototype.insert; | |
d3_selection_enterPrototype.empty = d3_selectionPrototype.empty; | |
d3_selection_enterPrototype.node = d3_selectionPrototype.node; | |
d3_selection_enterPrototype.select = function(selector) { | |
var subgroups = [], | |
subgroup, | |
subnode, | |
upgroup, | |
group, | |
node; | |
for (var j = -1, m = this.length; ++j < m;) { | |
upgroup = (group = this[j]).update; | |
subgroups.push(subgroup = []); | |
subgroup.parentNode = group.parentNode; | |
for (var i = -1, n = group.length; ++i < n;) { | |
if (node = group[i]) { | |
subgroup.push(upgroup[i] = subnode = selector.call(group.parentNode, node.__data__, i)); | |
subnode.__data__ = node.__data__; | |
} else { | |
subgroup.push(null); | |
} | |
} | |
} | |
return d3_selection(subgroups); | |
}; | |
function d3_transition(groups, id, time) { | |
d3_arraySubclass(groups, d3_transitionPrototype); | |
var tweens = new d3_Map, | |
event = d3.dispatch("start", "end"), | |
ease = d3_transitionEase; | |
groups.id = id; | |
groups.time = time; | |
groups.tween = function(name, tween) { | |
if (arguments.length < 2) return tweens.get(name); | |
if (tween == null) tweens.remove(name); | |
else tweens.set(name, tween); | |
return groups; | |
}; | |
groups.ease = function(value) { | |
if (!arguments.length) return ease; | |
ease = typeof value === "function" ? value : d3.ease.apply(d3, arguments); | |
return groups; | |
}; | |
groups.each = function(type, listener) { | |
if (arguments.length < 2) return d3_transition_each.call(groups, type); | |
event.on(type, listener); | |
return groups; | |
}; | |
d3.timer(function(elapsed) { | |
groups.each(function(d, i, j) { | |
var tweened = [], | |
node = this, | |
delay = groups[j][i].delay, | |
duration = groups[j][i].duration, | |
lock = node.__transition__ || (node.__transition__ = {active: 0, count: 0}); | |
++lock.count; | |
delay <= elapsed ? start(elapsed) : d3.timer(start, delay, time); | |
function start(elapsed) { | |
if (lock.active > id) return stop(); | |
lock.active = id; | |
tweens.forEach(function(key, value) { | |
if (value = value.call(node, d, i)) { | |
tweened.push(value); | |
} | |
}); | |
event.start.call(node, d, i); | |
if (!tick(elapsed)) d3.timer(tick, 0, time); | |
return 1; | |
} | |
function tick(elapsed) { | |
if (lock.active !== id) return stop(); | |
var t = (elapsed - delay) / duration, | |
e = ease(t), | |
n = tweened.length; | |
while (n > 0) { | |
tweened[--n].call(node, e); | |
} | |
if (t >= 1) { | |
stop(); | |
d3_transitionId = id; | |
event.end.call(node, d, i); | |
d3_transitionId = 0; | |
return 1; | |
} | |
} | |
function stop() { | |
if (!--lock.count) delete node.__transition__; | |
return 1; | |
} | |
}); | |
return 1; | |
}, 0, time); | |
return groups; | |
} | |
var d3_transitionRemove = {}; | |
function d3_transitionNull(d, i, a) { | |
return a != "" && d3_transitionRemove; | |
} | |
function d3_transitionTween(name, b) { | |
var interpolate = d3_interpolateByName(name); | |
function transitionFunction(d, i, a) { | |
var v = b.call(this, d, i); | |
return v == null | |
? a != "" && d3_transitionRemove | |
: a != v && interpolate(a, v); | |
} | |
function transitionString(d, i, a) { | |
return a != b && interpolate(a, b); | |
} | |
return typeof b === "function" ? transitionFunction | |
: b == null ? d3_transitionNull | |
: (b += "", transitionString); | |
} | |
var d3_transitionPrototype = [], | |
d3_transitionNextId = 0, | |
d3_transitionId = 0, | |
d3_transitionDefaultDelay = 0, | |
d3_transitionDefaultDuration = 250, | |
d3_transitionDefaultEase = d3.ease("cubic-in-out"), | |
d3_transitionDelay = d3_transitionDefaultDelay, | |
d3_transitionDuration = d3_transitionDefaultDuration, | |
d3_transitionEase = d3_transitionDefaultEase; | |
d3_transitionPrototype.call = d3_selectionPrototype.call; | |
d3.transition = function(selection) { | |
return arguments.length | |
? (d3_transitionId ? selection.transition() : selection) | |
: d3_selectionRoot.transition(); | |
}; | |
d3.transition.prototype = d3_transitionPrototype; | |
d3_transitionPrototype.select = function(selector) { | |
var subgroups = [], | |
subgroup, | |
subnode, | |
node; | |
if (typeof selector !== "function") selector = d3_selection_selector(selector); | |
for (var j = -1, m = this.length; ++j < m;) { | |
subgroups.push(subgroup = []); | |
for (var group = this[j], i = -1, n = group.length; ++i < n;) { | |
if ((node = group[i]) && (subnode = selector.call(node.node, node.node.__data__, i))) { | |
if ("__data__" in node.node) subnode.__data__ = node.node.__data__; | |
subgroup.push({node: subnode, delay: node.delay, duration: node.duration}); | |
} else { | |
subgroup.push(null); | |
} | |
} | |
} | |
return d3_transition(subgroups, this.id, this.time).ease(this.ease()); | |
}; | |
d3_transitionPrototype.selectAll = function(selector) { | |
var subgroups = [], | |
subgroup, | |
subnodes, | |
node; | |
if (typeof selector !== "function") selector = d3_selection_selectorAll(selector); | |
for (var j = -1, m = this.length; ++j < m;) { | |
for (var group = this[j], i = -1, n = group.length; ++i < n;) { | |
if (node = group[i]) { | |
subnodes = selector.call(node.node, node.node.__data__, i); | |
subgroups.push(subgroup = []); | |
for (var k = -1, o = subnodes.length; ++k < o;) { | |
subgroup.push({node: subnodes[k], delay: node.delay, duration: node.duration}); | |
} | |
} | |
} | |
} | |
return d3_transition(subgroups, this.id, this.time).ease(this.ease()); | |
}; | |
d3_transitionPrototype.attr = function(name, value) { | |
return this.attrTween(name, d3_transitionTween(name, value)); | |
}; | |
d3_transitionPrototype.attrTween = function(nameNS, tween) { | |
var name = d3.ns.qualify(nameNS); | |
function attrTween(d, i) { | |
var f = tween.call(this, d, i, this.getAttribute(name)); | |
return f === d3_transitionRemove | |
? (this.removeAttribute(name), null) | |
: f && function(t) { this.setAttribute(name, f(t)); }; | |
} | |
function attrTweenNS(d, i) { | |
var f = tween.call(this, d, i, this.getAttributeNS(name.space, name.local)); | |
return f === d3_transitionRemove | |
? (this.removeAttributeNS(name.space, name.local), null) | |
: f && function(t) { this.setAttributeNS(name.space, name.local, f(t)); }; | |
} | |
return this.tween("attr." + nameNS, name.local ? attrTweenNS : attrTween); | |
}; | |
d3_transitionPrototype.style = function(name, value, priority) { | |
if (arguments.length < 3) priority = ""; | |
return this.styleTween(name, d3_transitionTween(name, value), priority); | |
}; | |
d3_transitionPrototype.styleTween = function(name, tween, priority) { | |
if (arguments.length < 3) priority = ""; | |
return this.tween("style." + name, function(d, i) { | |
var f = tween.call(this, d, i, window.getComputedStyle(this, null).getPropertyValue(name)); | |
return f === d3_transitionRemove | |
? (this.style.removeProperty(name), null) | |
: f && function(t) { this.style.setProperty(name, f(t), priority); }; | |
}); | |
}; | |
d3_transitionPrototype.text = function(value) { | |
return this.tween("text", function(d, i) { | |
this.textContent = typeof value === "function" | |
? value.call(this, d, i) | |
: value; | |
}); | |
}; | |
d3_transitionPrototype.remove = function() { | |
return this.each("end.transition", function() { | |
var p; | |
if (!this.__transition__ && (p = this.parentNode)) p.removeChild(this); | |
}); | |
}; | |
d3_transitionPrototype.delay = function(value) { | |
var groups = this; | |
return groups.each(typeof value === "function" | |
? function(d, i, j) { groups[j][i].delay = value.apply(this, arguments) | 0; } | |
: (value = value | 0, function(d, i, j) { groups[j][i].delay = value; })); | |
}; | |
d3_transitionPrototype.duration = function(value) { | |
var groups = this; | |
return groups.each(typeof value === "function" | |
? function(d, i, j) { groups[j][i].duration = Math.max(1, value.apply(this, arguments) | 0); } | |
: (value = Math.max(1, value | 0), function(d, i, j) { groups[j][i].duration = value; })); | |
}; | |
function d3_transition_each(callback) { | |
var id = d3_transitionId, | |
ease = d3_transitionEase, | |
delay = d3_transitionDelay, | |
duration = d3_transitionDuration; | |
d3_transitionId = this.id; | |
d3_transitionEase = this.ease(); | |
for (var j = 0, m = this.length; j < m; j++) { | |
for (var group = this[j], i = 0, n = group.length; i < n; i++) { | |
var node = group[i]; | |
if (node) { | |
d3_transitionDelay = this[j][i].delay; | |
d3_transitionDuration = this[j][i].duration; | |
callback.call(node = node.node, node.__data__, i, j); | |
} | |
} | |
} | |
d3_transitionId = id; | |
d3_transitionEase = ease; | |
d3_transitionDelay = delay; | |
d3_transitionDuration = duration; | |
return this; | |
} | |
d3_transitionPrototype.transition = function() { | |
return this.select(d3_this); | |
}; | |
var d3_timer_queue = null, | |
d3_timer_interval, // is an interval (or frame) active? | |
d3_timer_timeout; // is a timeout active? | |
// The timer will continue to fire until callback returns true. | |
d3.timer = function(callback, delay, then) { | |
var found = false, | |
t0, | |
t1 = d3_timer_queue; | |
if (arguments.length < 3) { | |
if (arguments.length < 2) delay = 0; | |
else if (!isFinite(delay)) return; | |
then = Date.now(); | |
} | |
// See if the callback's already in the queue. | |
while (t1) { | |
if (t1.callback === callback) { | |
t1.then = then; | |
t1.delay = delay; | |
found = true; | |
break; | |
} | |
t0 = t1; | |
t1 = t1.next; | |
} | |
// Otherwise, add the callback to the queue. | |
if (!found) d3_timer_queue = { | |
callback: callback, | |
then: then, | |
delay: delay, | |
next: d3_timer_queue | |
}; | |
// Start animatin'! | |
if (!d3_timer_interval) { | |
d3_timer_timeout = clearTimeout(d3_timer_timeout); | |
d3_timer_interval = 1; | |
d3_timer_frame(d3_timer_step); | |
} | |
} | |
function d3_timer_step() { | |
var elapsed, | |
now = Date.now(), | |
t1 = d3_timer_queue; | |
while (t1) { | |
elapsed = now - t1.then; | |
if (elapsed >= t1.delay) t1.flush = t1.callback(elapsed); | |
t1 = t1.next; | |
} | |
var delay = d3_timer_flush() - now; | |
if (delay > 24) { | |
if (isFinite(delay)) { | |
clearTimeout(d3_timer_timeout); | |
d3_timer_timeout = setTimeout(d3_timer_step, delay); | |
} | |
d3_timer_interval = 0; | |
} else { | |
d3_timer_interval = 1; | |
d3_timer_frame(d3_timer_step); | |
} | |
} | |
d3.timer.flush = function() { | |
var elapsed, | |
now = Date.now(), | |
t1 = d3_timer_queue; | |
while (t1) { | |
elapsed = now - t1.then; | |
if (!t1.delay) t1.flush = t1.callback(elapsed); | |
t1 = t1.next; | |
} | |
d3_timer_flush(); | |
}; | |
// Flush after callbacks, to avoid concurrent queue modification. | |
function d3_timer_flush() { | |
var t0 = null, | |
t1 = d3_timer_queue, | |
then = Infinity; | |
while (t1) { | |
if (t1.flush) { | |
t1 = t0 ? t0.next = t1.next : d3_timer_queue = t1.next; | |
} else { | |
then = Math.min(then, t1.then + t1.delay); | |
t1 = (t0 = t1).next; | |
} | |
} | |
return then; | |
} | |
var d3_timer_frame = window.requestAnimationFrame | |
|| window.webkitRequestAnimationFrame | |
|| window.mozRequestAnimationFrame | |
|| window.oRequestAnimationFrame | |
|| window.msRequestAnimationFrame | |
|| function(callback) { setTimeout(callback, 17); }; | |
d3.transform = function(string) { | |
var g = document.createElementNS(d3.ns.prefix.svg, "g"), | |
identity = {a: 1, b: 0, c: 0, d: 1, e: 0, f: 0}; | |
return (d3.transform = function(string) { | |
g.setAttribute("transform", string); | |
var t = g.transform.baseVal.consolidate(); | |
return new d3_transform(t ? t.matrix : identity); | |
})(string); | |
}; | |
// Compute x-scale and normalize the first row. | |
// Compute shear and make second row orthogonal to first. | |
// Compute y-scale and normalize the second row. | |
// Finally, compute the rotation. | |
function d3_transform(m) { | |
var r0 = [m.a, m.b], | |
r1 = [m.c, m.d], | |
kx = d3_transformNormalize(r0), | |
kz = d3_transformDot(r0, r1), | |
ky = d3_transformNormalize(d3_transformCombine(r1, r0, -kz)) || 0; | |
if (r0[0] * r1[1] < r1[0] * r0[1]) { | |
r0[0] *= -1; | |
r0[1] *= -1; | |
kx *= -1; | |
kz *= -1; | |
} | |
this.rotate = (kx ? Math.atan2(r0[1], r0[0]) : Math.atan2(-r1[0], r1[1])) * d3_transformDegrees; | |
this.translate = [m.e, m.f]; | |
this.scale = [kx, ky]; | |
this.skew = ky ? Math.atan2(kz, ky) * d3_transformDegrees : 0; | |
}; | |
d3_transform.prototype.toString = function() { | |
return "translate(" + this.translate | |
+ ")rotate(" + this.rotate | |
+ ")skewX(" + this.skew | |
+ ")scale(" + this.scale | |
+ ")"; | |
}; | |
function d3_transformDot(a, b) { | |
return a[0] * b[0] + a[1] * b[1]; | |
} | |
function d3_transformNormalize(a) { | |
var k = Math.sqrt(d3_transformDot(a, a)); | |
if (k) { | |
a[0] /= k; | |
a[1] /= k; | |
} | |
return k; | |
} | |
function d3_transformCombine(a, b, k) { | |
a[0] += k * b[0]; | |
a[1] += k * b[1]; | |
return a; | |
} | |
var d3_transformDegrees = 180 / Math.PI; | |
d3.mouse = function(container) { | |
return d3_mousePoint(container, d3_eventSource()); | |
}; | |
// https://bugs.webkit.org/show_bug.cgi?id=44083 | |
var d3_mouse_bug44083 = /WebKit/.test(navigator.userAgent) ? -1 : 0; | |
function d3_mousePoint(container, e) { | |
var svg = container.ownerSVGElement || container; | |
if (svg.createSVGPoint) { | |
var point = svg.createSVGPoint(); | |
if ((d3_mouse_bug44083 < 0) && (window.scrollX || window.scrollY)) { | |
svg = d3.select(document.body) | |
.append("svg") | |
.style("position", "absolute") | |
.style("top", 0) | |
.style("left", 0); | |
var ctm = svg[0][0].getScreenCTM(); | |
d3_mouse_bug44083 = !(ctm.f || ctm.e); | |
svg.remove(); | |
} | |
if (d3_mouse_bug44083) { | |
point.x = e.pageX; | |
point.y = e.pageY; | |
} else { | |
point.x = e.clientX; | |
point.y = e.clientY; | |
} | |
point = point.matrixTransform(container.getScreenCTM().inverse()); | |
return [point.x, point.y]; | |
} | |
var rect = container.getBoundingClientRect(); | |
return [e.clientX - rect.left - container.clientLeft, e.clientY - rect.top - container.clientTop]; | |
}; | |
d3.touches = function(container, touches) { | |
if (arguments.length < 2) touches = d3_eventSource().touches; | |
return touches ? d3_array(touches).map(function(touch) { | |
var point = d3_mousePoint(container, touch); | |
point.identifier = touch.identifier; | |
return point; | |
}) : []; | |
}; | |
function d3_noop() {} | |
d3.scale = {}; | |
function d3_scaleExtent(domain) { | |
var start = domain[0], stop = domain[domain.length - 1]; | |
return start < stop ? [start, stop] : [stop, start]; | |
} | |
function d3_scaleRange(scale) { | |
return scale.rangeExtent ? scale.rangeExtent() : d3_scaleExtent(scale.range()); | |
} | |
function d3_scale_nice(domain, nice) { | |
var i0 = 0, | |
i1 = domain.length - 1, | |
x0 = domain[i0], | |
x1 = domain[i1], | |
dx; | |
if (x1 < x0) { | |
dx = i0; i0 = i1; i1 = dx; | |
dx = x0; x0 = x1; x1 = dx; | |
} | |
if (dx = x1 - x0) { | |
nice = nice(dx); | |
domain[i0] = nice.floor(x0); | |
domain[i1] = nice.ceil(x1); | |
} | |
return domain; | |
} | |
function d3_scale_niceDefault() { | |
return Math; | |
} | |
d3.scale.linear = function() { | |
return d3_scale_linear([0, 1], [0, 1], d3.interpolate, false); | |
}; | |
function d3_scale_linear(domain, range, interpolate, clamp) { | |
var output, | |
input; | |
function rescale() { | |
var linear = Math.min(domain.length, range.length) > 2 ? d3_scale_polylinear : d3_scale_bilinear, | |
uninterpolate = clamp ? d3_uninterpolateClamp : d3_uninterpolateNumber; | |
output = linear(domain, range, uninterpolate, interpolate); | |
input = linear(range, domain, uninterpolate, d3.interpolate); | |
return scale; | |
} | |
function scale(x) { | |
return output(x); | |
} | |
// Note: requires range is coercible to number! | |
scale.invert = function(y) { | |
return input(y); | |
}; | |
scale.domain = function(x) { | |
if (!arguments.length) return domain; | |
domain = x.map(Number); | |
return rescale(); | |
}; | |
scale.range = function(x) { | |
if (!arguments.length) return range; | |
range = x; | |
return rescale(); | |
}; | |
scale.rangeRound = function(x) { | |
return scale.range(x).interpolate(d3.interpolateRound); | |
}; | |
scale.clamp = function(x) { | |
if (!arguments.length) return clamp; | |
clamp = x; | |
return rescale(); | |
}; | |
scale.interpolate = function(x) { | |
if (!arguments.length) return interpolate; | |
interpolate = x; | |
return rescale(); | |
}; | |
scale.ticks = function(m) { | |
return d3_scale_linearTicks(domain, m); | |
}; | |
scale.tickFormat = function(m) { | |
return d3_scale_linearTickFormat(domain, m); | |
}; | |
scale.nice = function() { | |
d3_scale_nice(domain, d3_scale_linearNice); | |
return rescale(); | |
}; | |
scale.copy = function() { | |
return d3_scale_linear(domain, range, interpolate, clamp); | |
}; | |
return rescale(); | |
} | |
function d3_scale_linearRebind(scale, linear) { | |
return d3.rebind(scale, linear, "range", "rangeRound", "interpolate", "clamp"); | |
} | |
function d3_scale_linearNice(dx) { | |
dx = Math.pow(10, Math.round(Math.log(dx) / Math.LN10) - 1); | |
return { | |
floor: function(x) { return Math.floor(x / dx) * dx; }, | |
ceil: function(x) { return Math.ceil(x / dx) * dx; } | |
}; | |
} | |
function d3_scale_linearTickRange(domain, m) { | |
var extent = d3_scaleExtent(domain), | |
span = extent[1] - extent[0], | |
step = Math.pow(10, Math.floor(Math.log(span / m) / Math.LN10)), | |
err = m / span * step; | |
// Filter ticks to get closer to the desired count. | |
if (err <= .15) step *= 10; | |
else if (err <= .35) step *= 5; | |
else if (err <= .75) step *= 2; | |
// Round start and stop values to step interval. | |
extent[0] = Math.ceil(extent[0] / step) * step; | |
extent[1] = Math.floor(extent[1] / step) * step + step * .5; // inclusive | |
extent[2] = step; | |
return extent; | |
} | |
function d3_scale_linearTicks(domain, m) { | |
return d3.range.apply(d3, d3_scale_linearTickRange(domain, m)); | |
} | |
function d3_scale_linearTickFormat(domain, m) { | |
return d3.format(",." + Math.max(0, -Math.floor(Math.log(d3_scale_linearTickRange(domain, m)[2]) / Math.LN10 + .01)) + "f"); | |
} | |
function d3_scale_bilinear(domain, range, uninterpolate, interpolate) { | |
var u = uninterpolate(domain[0], domain[1]), | |
i = interpolate(range[0], range[1]); | |
return function(x) { | |
return i(u(x)); | |
}; | |
} | |
function d3_scale_polylinear(domain, range, uninterpolate, interpolate) { | |
var u = [], | |
i = [], | |
j = 0, | |
k = Math.min(domain.length, range.length) - 1; | |
// Handle descending domains. | |
if (domain[k] < domain[0]) { | |
domain = domain.slice().reverse(); | |
range = range.slice().reverse(); | |
} | |
while (++j <= k) { | |
u.push(uninterpolate(domain[j - 1], domain[j])); | |
i.push(interpolate(range[j - 1], range[j])); | |
} | |
return function(x) { | |
var j = d3.bisect(domain, x, 1, k) - 1; | |
return i[j](u[j](x)); | |
}; | |
} | |
d3.scale.log = function() { | |
return d3_scale_log(d3.scale.linear(), d3_scale_logp); | |
}; | |
function d3_scale_log(linear, log) { | |
var pow = log.pow; | |
function scale(x) { | |
return linear(log(x)); | |
} | |
scale.invert = function(x) { | |
return pow(linear.invert(x)); | |
}; | |
scale.domain = function(x) { | |
if (!arguments.length) return linear.domain().map(pow); | |
log = x[0] < 0 ? d3_scale_logn : d3_scale_logp; | |
pow = log.pow; | |
linear.domain(x.map(log)); | |
return scale; | |
}; | |
scale.nice = function() { | |
linear.domain(d3_scale_nice(linear.domain(), d3_scale_niceDefault)); | |
return scale; | |
}; | |
scale.ticks = function() { | |
var extent = d3_scaleExtent(linear.domain()), | |
ticks = []; | |
if (extent.every(isFinite)) { | |
var i = Math.floor(extent[0]), | |
j = Math.ceil(extent[1]), | |
u = pow(extent[0]), | |
v = pow(extent[1]); | |
if (log === d3_scale_logn) { | |
ticks.push(pow(i)); | |
for (; i++ < j;) for (var k = 9; k > 0; k--) ticks.push(pow(i) * k); | |
} else { | |
for (; i < j; i++) for (var k = 1; k < 10; k++) ticks.push(pow(i) * k); | |
ticks.push(pow(i)); | |
} | |
for (i = 0; ticks[i] < u; i++) {} // strip small values | |
for (j = ticks.length; ticks[j - 1] > v; j--) {} // strip big values | |
ticks = ticks.slice(i, j); | |
} | |
return ticks; | |
}; | |
scale.tickFormat = function(n, format) { | |
if (arguments.length < 2) format = d3_scale_logFormat; | |
if (arguments.length < 1) return format; | |
var k = n / scale.ticks().length, | |
f = log === d3_scale_logn ? (e = -1e-12, Math.floor) : (e = 1e-12, Math.ceil), | |
e; | |
return function(d) { | |
// see https://github.com/mbostock/d3/issues/655 | |
//return d / pow(f(log(d) + e)) < k ? format(d) : ""; | |
return d / pow(f(log(d) + e)) == 0.1 ? format(d) : ""; | |
}; | |
}; | |
scale.copy = function() { | |
return d3_scale_log(linear.copy(), log); | |
}; | |
return d3_scale_linearRebind(scale, linear); | |
} | |
var d3_scale_logFormat = d3.format(".0e"); | |
function d3_scale_logp(x) { | |
return Math.log(x < 0 ? 0 : x) / Math.LN10; | |
} | |
function d3_scale_logn(x) { | |
return -Math.log(x > 0 ? 0 : -x) / Math.LN10; | |
} | |
d3_scale_logp.pow = function(x) { | |
return Math.pow(10, x); | |
}; | |
d3_scale_logn.pow = function(x) { | |
return -Math.pow(10, -x); | |
}; | |
d3.scale.pow = function() { | |
return d3_scale_pow(d3.scale.linear(), 1); | |
}; | |
function d3_scale_pow(linear, exponent) { | |
var powp = d3_scale_powPow(exponent), | |
powb = d3_scale_powPow(1 / exponent); | |
function scale(x) { | |
return linear(powp(x)); | |
} | |
scale.invert = function(x) { | |
return powb(linear.invert(x)); | |
}; | |
scale.domain = function(x) { | |
if (!arguments.length) return linear.domain().map(powb); | |
linear.domain(x.map(powp)); | |
return scale; | |
}; | |
scale.ticks = function(m) { | |
return d3_scale_linearTicks(scale.domain(), m); | |
}; | |
scale.tickFormat = function(m) { | |
return d3_scale_linearTickFormat(scale.domain(), m); | |
}; | |
scale.nice = function() { | |
return scale.domain(d3_scale_nice(scale.domain(), d3_scale_linearNice)); | |
}; | |
scale.exponent = function(x) { | |
if (!arguments.length) return exponent; | |
var domain = scale.domain(); | |
powp = d3_scale_powPow(exponent = x); | |
powb = d3_scale_powPow(1 / exponent); | |
return scale.domain(domain); | |
}; | |
scale.copy = function() { | |
return d3_scale_pow(linear.copy(), exponent); | |
}; | |
return d3_scale_linearRebind(scale, linear); | |
} | |
function d3_scale_powPow(e) { | |
return function(x) { | |
return x < 0 ? -Math.pow(-x, e) : Math.pow(x, e); | |
}; | |
} | |
d3.scale.sqrt = function() { | |
return d3.scale.pow().exponent(.5); | |
}; | |
d3.scale.ordinal = function() { | |
return d3_scale_ordinal([], {t: "range", x: []}); | |
}; | |
function d3_scale_ordinal(domain, ranger) { | |
var index, | |
range, | |
rangeBand; | |
function scale(x) { | |
return range[((index.get(x) || index.set(x, domain.push(x))) - 1) % range.length]; | |
} | |
function steps(start, step) { | |
return d3.range(domain.length).map(function(i) { return start + step * i; }); | |
} | |
scale.domain = function(x) { | |
if (!arguments.length) return domain; | |
domain = []; | |
index = new d3_Map; | |
var i = -1, n = x.length, xi; | |
while (++i < n) if (!index.has(xi = x[i])) index.set(xi, domain.push(xi)); | |
return scale[ranger.t](ranger.x, ranger.p); | |
}; | |
scale.range = function(x) { | |
if (!arguments.length) return range; | |
range = x; | |
rangeBand = 0; | |
ranger = {t: "range", x: x}; | |
return scale; | |
}; | |
scale.rangePoints = function(x, padding) { | |
if (arguments.length < 2) padding = 0; | |
var start = x[0], | |
stop = x[1], | |
step = (stop - start) / (domain.length - 1 + padding); | |
range = steps(domain.length < 2 ? (start + stop) / 2 : start + step * padding / 2, step); | |
rangeBand = 0; | |
ranger = {t: "rangePoints", x: x, p: padding}; | |
return scale; | |
}; | |
scale.rangeBands = function(x, padding) { | |
if (arguments.length < 2) padding = 0; | |
var reverse = x[1] < x[0], | |
start = x[reverse - 0], | |
stop = x[1 - reverse], | |
step = (stop - start) / (domain.length + padding); | |
range = steps(start + step * padding, step); | |
if (reverse) range.reverse(); | |
rangeBand = step * (1 - padding); | |
ranger = {t: "rangeBands", x: x, p: padding}; | |
return scale; | |
}; | |
scale.rangeRoundBands = function(x, padding) { | |
if (arguments.length < 2) padding = 0; | |
var reverse = x[1] < x[0], | |
start = x[reverse - 0], | |
stop = x[1 - reverse], | |
step = Math.floor((stop - start) / (domain.length + padding)), | |
error = stop - start - (domain.length - padding) * step; | |
range = steps(start + Math.round(error / 2), step); | |
if (reverse) range.reverse(); | |
rangeBand = Math.round(step * (1 - padding)); | |
ranger = {t: "rangeRoundBands", x: x, p: padding}; | |
return scale; | |
}; | |
scale.rangeBand = function() { | |
return rangeBand; | |
}; | |
scale.rangeExtent = function() { | |
return d3_scaleExtent(ranger.x); | |
}; | |
scale.copy = function() { | |
return d3_scale_ordinal(domain, ranger); | |
}; | |
return scale.domain(domain); | |
} | |
/* | |
* This product includes color specifications and designs developed by Cynthia | |
* Brewer (http://colorbrewer.org/). See lib/colorbrewer for more information. | |
*/ | |
d3.scale.category10 = function() { | |
return d3.scale.ordinal().range(d3_category10); | |
}; | |
d3.scale.category20 = function() { | |
return d3.scale.ordinal().range(d3_category20); | |
}; | |
d3.scale.category20b = function() { | |
return d3.scale.ordinal().range(d3_category20b); | |
}; | |
d3.scale.category20c = function() { | |
return d3.scale.ordinal().range(d3_category20c); | |
}; | |
var d3_category10 = [ | |
"#1f77b4", "#ff7f0e", "#2ca02c", "#d62728", "#9467bd", | |
"#8c564b", "#e377c2", "#7f7f7f", "#bcbd22", "#17becf" | |
]; | |
var d3_category20 = [ | |
"#1f77b4", "#aec7e8", | |
"#ff7f0e", "#ffbb78", | |
"#2ca02c", "#98df8a", | |
"#d62728", "#ff9896", | |
"#9467bd", "#c5b0d5", | |
"#8c564b", "#c49c94", | |
"#e377c2", "#f7b6d2", | |
"#7f7f7f", "#c7c7c7", | |
"#bcbd22", "#dbdb8d", | |
"#17becf", "#9edae5" | |
]; | |
var d3_category20b = [ | |
"#393b79", "#5254a3", "#6b6ecf", "#9c9ede", | |
"#637939", "#8ca252", "#b5cf6b", "#cedb9c", | |
"#8c6d31", "#bd9e39", "#e7ba52", "#e7cb94", | |
"#843c39", "#ad494a", "#d6616b", "#e7969c", | |
"#7b4173", "#a55194", "#ce6dbd", "#de9ed6" | |
]; | |
var d3_category20c = [ | |
"#3182bd", "#6baed6", "#9ecae1", "#c6dbef", | |
"#e6550d", "#fd8d3c", "#fdae6b", "#fdd0a2", | |
"#31a354", "#74c476", "#a1d99b", "#c7e9c0", | |
"#756bb1", "#9e9ac8", "#bcbddc", "#dadaeb", | |
"#636363", "#969696", "#bdbdbd", "#d9d9d9" | |
]; | |
d3.scale.quantile = function() { | |
return d3_scale_quantile([], []); | |
}; | |
function d3_scale_quantile(domain, range) { | |
var thresholds; | |
function rescale() { | |
var k = 0, | |
n = domain.length, | |
q = range.length; | |
thresholds = []; | |
while (++k < q) thresholds[k - 1] = d3.quantile(domain, k / q); | |
return scale; | |
} | |
function scale(x) { | |
if (isNaN(x = +x)) return NaN; | |
return range[d3.bisect(thresholds, x)]; | |
} | |
scale.domain = function(x) { | |
if (!arguments.length) return domain; | |
domain = x.filter(function(d) { return !isNaN(d); }).sort(d3.ascending); | |
return rescale(); | |
}; | |
scale.range = function(x) { | |
if (!arguments.length) return range; | |
range = x; | |
return rescale(); | |
}; | |
scale.quantiles = function() { | |
return thresholds; | |
}; | |
scale.copy = function() { | |
return d3_scale_quantile(domain, range); // copy on write! | |
}; | |
return rescale(); | |
} | |
d3.scale.quantize = function() { | |
return d3_scale_quantize(0, 1, [0, 1]); | |
}; | |
function d3_scale_quantize(x0, x1, range) { | |
var kx, i; | |
function scale(x) { | |
return range[Math.max(0, Math.min(i, Math.floor(kx * (x - x0))))]; | |
} | |
function rescale() { | |
kx = range.length / (x1 - x0); | |
i = range.length - 1; | |
return scale; | |
} | |
scale.domain = function(x) { | |
if (!arguments.length) return [x0, x1]; | |
x0 = +x[0]; | |
x1 = +x[x.length - 1]; | |
return rescale(); | |
}; | |
scale.range = function(x) { | |
if (!arguments.length) return range; | |
range = x; | |
return rescale(); | |
}; | |
scale.copy = function() { | |
return d3_scale_quantize(x0, x1, range); // copy on write | |
}; | |
return rescale(); | |
} | |
d3.scale.identity = function() { | |
return d3_scale_identity([0, 1]); | |
}; | |
function d3_scale_identity(domain) { | |
function identity(x) { return +x; } | |
identity.invert = identity; | |
identity.domain = identity.range = function(x) { | |
if (!arguments.length) return domain; | |
domain = x.map(identity); | |
return identity; | |
}; | |
identity.ticks = function(m) { | |
return d3_scale_linearTicks(domain, m); | |
}; | |
identity.tickFormat = function(m) { | |
return d3_scale_linearTickFormat(domain, m); | |
}; | |
identity.copy = function() { | |
return d3_scale_identity(domain); | |
}; | |
return identity; | |
} | |
d3.svg = {}; | |
d3.svg.arc = function() { | |
var innerRadius = d3_svg_arcInnerRadius, | |
outerRadius = d3_svg_arcOuterRadius, | |
startAngle = d3_svg_arcStartAngle, | |
endAngle = d3_svg_arcEndAngle; | |
function arc() { | |
var r0 = innerRadius.apply(this, arguments), | |
r1 = outerRadius.apply(this, arguments), | |
a0 = startAngle.apply(this, arguments) + d3_svg_arcOffset, | |
a1 = endAngle.apply(this, arguments) + d3_svg_arcOffset, | |
da = (a1 < a0 && (da = a0, a0 = a1, a1 = da), a1 - a0), | |
df = da < Math.PI ? "0" : "1", | |
c0 = Math.cos(a0), | |
s0 = Math.sin(a0), | |
c1 = Math.cos(a1), | |
s1 = Math.sin(a1); | |
return da >= d3_svg_arcMax | |
? (r0 | |
? "M0," + r1 | |
+ "A" + r1 + "," + r1 + " 0 1,1 0," + (-r1) | |
+ "A" + r1 + "," + r1 + " 0 1,1 0," + r1 | |
+ "M0," + r0 | |
+ "A" + r0 + "," + r0 + " 0 1,0 0," + (-r0) | |
+ "A" + r0 + "," + r0 + " 0 1,0 0," + r0 | |
+ "Z" | |
: "M0," + r1 | |
+ "A" + r1 + "," + r1 + " 0 1,1 0," + (-r1) | |
+ "A" + r1 + "," + r1 + " 0 1,1 0," + r1 | |
+ "Z") | |
: (r0 | |
? "M" + r1 * c0 + "," + r1 * s0 | |
+ "A" + r1 + "," + r1 + " 0 " + df + ",1 " + r1 * c1 + "," + r1 * s1 | |
+ "L" + r0 * c1 + "," + r0 * s1 | |
+ "A" + r0 + "," + r0 + " 0 " + df + ",0 " + r0 * c0 + "," + r0 * s0 | |
+ "Z" | |
: "M" + r1 * c0 + "," + r1 * s0 | |
+ "A" + r1 + "," + r1 + " 0 " + df + ",1 " + r1 * c1 + "," + r1 * s1 | |
+ "L0,0" | |
+ "Z"); | |
} | |
arc.innerRadius = function(v) { | |
if (!arguments.length) return innerRadius; | |
innerRadius = d3_functor(v); | |
return arc; | |
}; | |
arc.outerRadius = function(v) { | |
if (!arguments.length) return outerRadius; | |
outerRadius = d3_functor(v); | |
return arc; | |
}; | |
arc.startAngle = function(v) { | |
if (!arguments.length) return startAngle; | |
startAngle = d3_functor(v); | |
return arc; | |
}; | |
arc.endAngle = function(v) { | |
if (!arguments.length) return endAngle; | |
endAngle = d3_functor(v); | |
return arc; | |
}; | |
arc.centroid = function() { | |
var r = (innerRadius.apply(this, arguments) | |
+ outerRadius.apply(this, arguments)) / 2, | |
a = (startAngle.apply(this, arguments) | |
+ endAngle.apply(this, arguments)) / 2 + d3_svg_arcOffset; | |
return [Math.cos(a) * r, Math.sin(a) * r]; | |
}; | |
return arc; | |
}; | |
var d3_svg_arcOffset = -Math.PI / 2, | |
d3_svg_arcMax = 2 * Math.PI - 1e-6; | |
function d3_svg_arcInnerRadius(d) { | |
return d.innerRadius; | |
} | |
function d3_svg_arcOuterRadius(d) { | |
return d.outerRadius; | |
} | |
function d3_svg_arcStartAngle(d) { | |
return d.startAngle; | |
} | |
function d3_svg_arcEndAngle(d) { | |
return d.endAngle; | |
} | |
function d3_svg_line(projection) { | |
var x = d3_svg_lineX, | |
y = d3_svg_lineY, | |
defined = d3_true, | |
interpolate = d3_svg_lineInterpolatorDefault, | |
interpolator = d3_svg_lineLinear, | |
tension = .7; | |
function line(data) { | |
var segments = [], | |
points = [], | |
i = -1, | |
n = data.length, | |
d, | |
fx = d3_functor(x), | |
fy = d3_functor(y); | |
function segment() { | |
segments.push("M", interpolator(projection(points), tension)); | |
} | |
while (++i < n) { | |
if (defined.call(this, d = data[i], i)) { | |
points.push([+fx.call(this, d, i), +fy.call(this, d, i)]); | |
} else if (points.length) { | |
segment(); | |
points = []; | |
} | |
} | |
if (points.length) segment(); | |
return segments.length ? segments.join("") : null; | |
} | |
line.x = function(_) { | |
if (!arguments.length) return x; | |
x = _; | |
return line; | |
}; | |
line.y = function(_) { | |
if (!arguments.length) return y; | |
y = _; | |
return line; | |
}; | |
line.defined = function(_) { | |
if (!arguments.length) return defined; | |
defined = _; | |
return line; | |
}; | |
line.interpolate = function(_) { | |
if (!arguments.length) return interpolate; | |
if (!d3_svg_lineInterpolators.has(_ += "")) _ = d3_svg_lineInterpolatorDefault; | |
interpolator = d3_svg_lineInterpolators.get(interpolate = _); | |
return line; | |
}; | |
line.tension = function(_) { | |
if (!arguments.length) return tension; | |
tension = _; | |
return line; | |
}; | |
return line; | |
} | |
d3.svg.line = function() { | |
return d3_svg_line(d3_identity); | |
}; | |
// The default `x` property, which references d[0]. | |
function d3_svg_lineX(d) { | |
return d[0]; | |
} | |
// The default `y` property, which references d[1]. | |
function d3_svg_lineY(d) { | |
return d[1]; | |
} | |
var d3_svg_lineInterpolatorDefault = "linear"; | |
// The various interpolators supported by the `line` class. | |
var d3_svg_lineInterpolators = d3.map({ | |
"linear": d3_svg_lineLinear, | |
"step-before": d3_svg_lineStepBefore, | |
"step-after": d3_svg_lineStepAfter, | |
"basis": d3_svg_lineBasis, | |
"basis-open": d3_svg_lineBasisOpen, | |
"basis-closed": d3_svg_lineBasisClosed, | |
"bundle": d3_svg_lineBundle, | |
"cardinal": d3_svg_lineCardinal, | |
"cardinal-open": d3_svg_lineCardinalOpen, | |
"cardinal-closed": d3_svg_lineCardinalClosed, | |
"monotone": d3_svg_lineMonotone | |
}); | |
// Linear interpolation; generates "L" commands. | |
function d3_svg_lineLinear(points) { | |
var i = 0, | |
n = points.length, | |
p = points[0], | |
path = [p[0], ",", p[1]]; | |
while (++i < n) path.push("L", (p = points[i])[0], ",", p[1]); | |
return path.join(""); | |
} | |
// Step interpolation; generates "H" and "V" commands. | |
function d3_svg_lineStepBefore(points) { | |
var i = 0, | |
n = points.length, | |
p = points[0], | |
path = [p[0], ",", p[1]]; | |
while (++i < n) path.push("V", (p = points[i])[1], "H", p[0]); | |
return path.join(""); | |
} | |
// Step interpolation; generates "H" and "V" commands. | |
function d3_svg_lineStepAfter(points) { | |
var i = 0, | |
n = points.length, | |
p = points[0], | |
path = [p[0], ",", p[1]]; | |
while (++i < n) path.push("H", (p = points[i])[0], "V", p[1]); | |
return path.join(""); | |
} | |
// Open cardinal spline interpolation; generates "C" commands. | |
function d3_svg_lineCardinalOpen(points, tension) { | |
return points.length < 4 | |
? d3_svg_lineLinear(points) | |
: points[1] + d3_svg_lineHermite(points.slice(1, points.length - 1), | |
d3_svg_lineCardinalTangents(points, tension)); | |
} | |
// Closed cardinal spline interpolation; generates "C" commands. | |
function d3_svg_lineCardinalClosed(points, tension) { | |
return points.length < 3 | |
? d3_svg_lineLinear(points) | |
: points[0] + d3_svg_lineHermite((points.push(points[0]), points), | |
d3_svg_lineCardinalTangents([points[points.length - 2]] | |
.concat(points, [points[1]]), tension)); | |
} | |
// Cardinal spline interpolation; generates "C" commands. | |
function d3_svg_lineCardinal(points, tension, closed) { | |
return points.length < 3 | |
? d3_svg_lineLinear(points) | |
: points[0] + d3_svg_lineHermite(points, | |
d3_svg_lineCardinalTangents(points, tension)); | |
} | |
// Hermite spline construction; generates "C" commands. | |
function d3_svg_lineHermite(points, tangents) { | |
if (tangents.length < 1 | |
|| (points.length != tangents.length | |
&& points.length != tangents.length + 2)) { | |
return d3_svg_lineLinear(points); | |
} | |
var quad = points.length != tangents.length, | |
path = "", | |
p0 = points[0], | |
p = points[1], | |
t0 = tangents[0], | |
t = t0, | |
pi = 1; | |
if (quad) { | |
path += "Q" + (p[0] - t0[0] * 2 / 3) + "," + (p[1] - t0[1] * 2 / 3) | |
+ "," + p[0] + "," + p[1]; | |
p0 = points[1]; | |
pi = 2; | |
} | |
if (tangents.length > 1) { | |
t = tangents[1]; | |
p = points[pi]; | |
pi++; | |
path += "C" + (p0[0] + t0[0]) + "," + (p0[1] + t0[1]) | |
+ "," + (p[0] - t[0]) + "," + (p[1] - t[1]) | |
+ "," + p[0] + "," + p[1]; | |
for (var i = 2; i < tangents.length; i++, pi++) { | |
p = points[pi]; | |
t = tangents[i]; | |
path += "S" + (p[0] - t[0]) + "," + (p[1] - t[1]) | |
+ "," + p[0] + "," + p[1]; | |
} | |
} | |
if (quad) { | |
var lp = points[pi]; | |
path += "Q" + (p[0] + t[0] * 2 / 3) + "," + (p[1] + t[1] * 2 / 3) | |
+ "," + lp[0] + "," + lp[1]; | |
} | |
return path; | |
} | |
// Generates tangents for a cardinal spline. | |
function d3_svg_lineCardinalTangents(points, tension) { | |
var tangents = [], | |
a = (1 - tension) / 2, | |
p0, | |
p1 = points[0], | |
p2 = points[1], | |
i = 1, | |
n = points.length; | |
while (++i < n) { | |
p0 = p1; | |
p1 = p2; | |
p2 = points[i]; | |
tangents.push([a * (p2[0] - p0[0]), a * (p2[1] - p0[1])]); | |
} | |
return tangents; | |
} | |
// B-spline interpolation; generates "C" commands. | |
function d3_svg_lineBasis(points) { | |
if (points.length < 3) return d3_svg_lineLinear(points); | |
var i = 1, | |
n = points.length, | |
pi = points[0], | |
x0 = pi[0], | |
y0 = pi[1], | |
px = [x0, x0, x0, (pi = points[1])[0]], | |
py = [y0, y0, y0, pi[1]], | |
path = [x0, ",", y0]; | |
d3_svg_lineBasisBezier(path, px, py); | |
while (++i < n) { | |
pi = points[i]; | |
px.shift(); px.push(pi[0]); | |
py.shift(); py.push(pi[1]); | |
d3_svg_lineBasisBezier(path, px, py); | |
} | |
i = -1; | |
while (++i < 2) { | |
px.shift(); px.push(pi[0]); | |
py.shift(); py.push(pi[1]); | |
d3_svg_lineBasisBezier(path, px, py); | |
} | |
return path.join(""); | |
} | |
// Open B-spline interpolation; generates "C" commands. | |
function d3_svg_lineBasisOpen(points) { | |
if (points.length < 4) return d3_svg_lineLinear(points); | |
var path = [], | |
i = -1, | |
n = points.length, | |
pi, | |
px = [0], | |
py = [0]; | |
while (++i < 3) { | |
pi = points[i]; | |
px.push(pi[0]); | |
py.push(pi[1]); | |
} | |
path.push(d3_svg_lineDot4(d3_svg_lineBasisBezier3, px) | |
+ "," + d3_svg_lineDot4(d3_svg_lineBasisBezier3, py)); | |
--i; while (++i < n) { | |
pi = points[i]; | |
px.shift(); px.push(pi[0]); | |
py.shift(); py.push(pi[1]); | |
d3_svg_lineBasisBezier(path, px, py); | |
} | |
return path.join(""); | |
} | |
// Closed B-spline interpolation; generates "C" commands. | |
function d3_svg_lineBasisClosed(points) { | |
var path, | |
i = -1, | |
n = points.length, | |
m = n + 4, | |
pi, | |
px = [], | |
py = []; | |
while (++i < 4) { | |
pi = points[i % n]; | |
px.push(pi[0]); | |
py.push(pi[1]); | |
} | |
path = [ | |
d3_svg_lineDot4(d3_svg_lineBasisBezier3, px), ",", | |
d3_svg_lineDot4(d3_svg_lineBasisBezier3, py) | |
]; | |
--i; while (++i < m) { | |
pi = points[i % n]; | |
px.shift(); px.push(pi[0]); | |
py.shift(); py.push(pi[1]); | |
d3_svg_lineBasisBezier(path, px, py); | |
} | |
return path.join(""); | |
} | |
function d3_svg_lineBundle(points, tension) { | |
var n = points.length - 1, | |
x0 = points[0][0], | |
y0 = points[0][1], | |
dx = points[n][0] - x0, | |
dy = points[n][1] - y0, | |
i = -1, | |
p, | |
t; | |
while (++i <= n) { | |
p = points[i]; | |
t = i / n; | |
p[0] = tension * p[0] + (1 - tension) * (x0 + t * dx); | |
p[1] = tension * p[1] + (1 - tension) * (y0 + t * dy); | |
} | |
return d3_svg_lineBasis(points); | |
} | |
// Returns the dot product of the given four-element vectors. | |
function d3_svg_lineDot4(a, b) { | |
return a[0] * b[0] + a[1] * b[1] + a[2] * b[2] + a[3] * b[3]; | |
} | |
// Matrix to transform basis (b-spline) control points to bezier | |
// control points. Derived from FvD 11.2.8. | |
var d3_svg_lineBasisBezier1 = [0, 2/3, 1/3, 0], | |
d3_svg_lineBasisBezier2 = [0, 1/3, 2/3, 0], | |
d3_svg_lineBasisBezier3 = [0, 1/6, 2/3, 1/6]; | |
// Pushes a "C" Bézier curve onto the specified path array, given the | |
// two specified four-element arrays which define the control points. | |
function d3_svg_lineBasisBezier(path, x, y) { | |
path.push( | |
"C", d3_svg_lineDot4(d3_svg_lineBasisBezier1, x), | |
",", d3_svg_lineDot4(d3_svg_lineBasisBezier1, y), | |
",", d3_svg_lineDot4(d3_svg_lineBasisBezier2, x), | |
",", d3_svg_lineDot4(d3_svg_lineBasisBezier2, y), | |
",", d3_svg_lineDot4(d3_svg_lineBasisBezier3, x), | |
",", d3_svg_lineDot4(d3_svg_lineBasisBezier3, y)); | |
} | |
// Computes the slope from points p0 to p1. | |
function d3_svg_lineSlope(p0, p1) { | |
return (p1[1] - p0[1]) / (p1[0] - p0[0]); | |
} | |
// Compute three-point differences for the given points. | |
// http://en.wikipedia.org/wiki/Cubic_Hermite_spline#Finite_difference | |
function d3_svg_lineFiniteDifferences(points) { | |
var i = 0, | |
j = points.length - 1, | |
m = [], | |
p0 = points[0], | |
p1 = points[1], | |
d = m[0] = d3_svg_lineSlope(p0, p1); | |
while (++i < j) { | |
m[i] = d + (d = d3_svg_lineSlope(p0 = p1, p1 = points[i + 1])); | |
} | |
m[i] = d; | |
return m; | |
} | |
// Interpolates the given points using Fritsch-Carlson Monotone cubic Hermite | |
// interpolation. Returns an array of tangent vectors. For details, see | |
// http://en.wikipedia.org/wiki/Monotone_cubic_interpolation | |
function d3_svg_lineMonotoneTangents(points) { | |
var tangents = [], | |
d, | |
a, | |
b, | |
s, | |
m = d3_svg_lineFiniteDifferences(points), | |
i = -1, | |
j = points.length - 1; | |
// The first two steps are done by computing finite-differences: | |
// 1. Compute the slopes of the secant lines between successive points. | |
// 2. Initialize the tangents at every point as the average of the secants. | |
// Then, for each segment… | |
while (++i < j) { | |
d = d3_svg_lineSlope(points[i], points[i + 1]); | |
// 3. If two successive yk = y{k + 1} are equal (i.e., d is zero), then set | |
// mk = m{k + 1} = 0 as the spline connecting these points must be flat to | |
// preserve monotonicity. Ignore step 4 and 5 for those k. | |
if (Math.abs(d) < 1e-6) { | |
m[i] = m[i + 1] = 0; | |
} else { | |
// 4. Let ak = mk / dk and bk = m{k + 1} / dk. | |
a = m[i] / d; | |
b = m[i + 1] / d; | |
// 5. Prevent overshoot and ensure monotonicity by restricting the | |
// magnitude of vector <ak, bk> to a circle of radius 3. | |
s = a * a + b * b; | |
if (s > 9) { | |
s = d * 3 / Math.sqrt(s); | |
m[i] = s * a; | |
m[i + 1] = s * b; | |
} | |
} | |
} | |
// Compute the normalized tangent vector from the slopes. Note that if x is | |
// not monotonic, it's possible that the slope will be infinite, so we protect | |
// against NaN by setting the coordinate to zero. | |
i = -1; while (++i <= j) { | |
s = (points[Math.min(j, i + 1)][0] - points[Math.max(0, i - 1)][0]) / (6 * (1 + m[i] * m[i])); | |
tangents.push([s || 0, m[i] * s || 0]); | |
} | |
return tangents; | |
} | |
function d3_svg_lineMonotone(points) { | |
return points.length < 3 | |
? d3_svg_lineLinear(points) | |
: points[0] + d3_svg_lineHermite(points, d3_svg_lineMonotoneTangents(points)); | |
} | |
d3.svg.line.radial = function() { | |
var line = d3_svg_line(d3_svg_lineRadial); | |
line.radius = line.x, delete line.x; | |
line.angle = line.y, delete line.y; | |
return line; | |
}; | |
function d3_svg_lineRadial(points) { | |
var point, | |
i = -1, | |
n = points.length, | |
r, | |
a; | |
while (++i < n) { | |
point = points[i]; | |
r = point[0]; | |
a = point[1] + d3_svg_arcOffset; | |
point[0] = r * Math.cos(a); | |
point[1] = r * Math.sin(a); | |
} | |
return points; | |
} | |
function d3_svg_area(projection) { | |
var x0 = d3_svg_lineX, | |
x1 = d3_svg_lineX, | |
y0 = 0, | |
y1 = d3_svg_lineY, | |
defined = d3_true, | |
interpolate = d3_svg_lineInterpolatorDefault, | |
i0 = d3_svg_lineLinear, | |
i1 = d3_svg_lineLinear, | |
L = "L", | |
tension = .7; | |
function area(data) { | |
var segments = [], | |
points0 = [], | |
points1 = [], | |
i = -1, | |
n = data.length, | |
d, | |
fx0 = d3_functor(x0), | |
fy0 = d3_functor(y0), | |
fx1 = x0 === x1 ? function() { return x; } : d3_functor(x1), | |
fy1 = y0 === y1 ? function() { return y; } : d3_functor(y1), | |
x, | |
y; | |
function segment() { | |
segments.push("M", i0(projection(points1), tension), | |
L, i1(projection(points0.reverse()), tension), | |
"Z"); | |
} | |
while (++i < n) { | |
if (defined.call(this, d = data[i], i)) { | |
points0.push([x = +fx0.call(this, d, i), y = +fy0.call(this, d, i)]); | |
points1.push([+fx1.call(this, d, i), +fy1.call(this, d, i)]); | |
} else if (points0.length) { | |
segment(); | |
points0 = []; | |
points1 = []; | |
} | |
} | |
if (points0.length) segment(); | |
return segments.length ? segments.join("") : null; | |
} | |
area.x = function(_) { | |
if (!arguments.length) return x1; | |
x0 = x1 = _; | |
return area; | |
}; | |
area.x0 = function(_) { | |
if (!arguments.length) return x0; | |
x0 = _; | |
return area; | |
}; | |
area.x1 = function(_) { | |
if (!arguments.length) return x1; | |
x1 = _; | |
return area; | |
}; | |
area.y = function(_) { | |
if (!arguments.length) return y1; | |
y0 = y1 = _; | |
return area; | |
}; | |
area.y0 = function(_) { | |
if (!arguments.length) return y0; | |
y0 = _; | |
return area; | |
}; | |
area.y1 = function(_) { | |
if (!arguments.length) return y1; | |
y1 = _; | |
return area; | |
}; | |
area.defined = function(_) { | |
if (!arguments.length) return defined; | |
defined = _; | |
return area; | |
}; | |
area.interpolate = function(_) { | |
if (!arguments.length) return interpolate; | |
if (!d3_svg_lineInterpolators.has(_ += "")) _ = d3_svg_lineInterpolatorDefault; | |
i0 = d3_svg_lineInterpolators.get(interpolate = _); | |
i1 = i0.reverse || i0; | |
L = /-closed$/.test(_) ? "M" : "L"; | |
return area; | |
}; | |
area.tension = function(_) { | |
if (!arguments.length) return tension; | |
tension = _; | |
return area; | |
}; | |
return area; | |
} | |
d3_svg_lineStepBefore.reverse = d3_svg_lineStepAfter; | |
d3_svg_lineStepAfter.reverse = d3_svg_lineStepBefore; | |
d3.svg.area = function() { | |
return d3_svg_area(Object); | |
}; | |
d3.svg.area.radial = function() { | |
var area = d3_svg_area(d3_svg_lineRadial); | |
area.radius = area.x, delete area.x; | |
area.innerRadius = area.x0, delete area.x0; | |
area.outerRadius = area.x1, delete area.x1; | |
area.angle = area.y, delete area.y; | |
area.startAngle = area.y0, delete area.y0; | |
area.endAngle = area.y1, delete area.y1; | |
return area; | |
}; | |
d3.svg.chord = function() { | |
var source = d3_svg_chordSource, | |
target = d3_svg_chordTarget, | |
radius = d3_svg_chordRadius, | |
startAngle = d3_svg_arcStartAngle, | |
endAngle = d3_svg_arcEndAngle; | |
// TODO Allow control point to be customized. | |
function chord(d, i) { | |
var s = subgroup(this, source, d, i), | |
t = subgroup(this, target, d, i); | |
return "M" + s.p0 | |
+ arc(s.r, s.p1, s.a1 - s.a0) + (equals(s, t) | |
? curve(s.r, s.p1, s.r, s.p0) | |
: curve(s.r, s.p1, t.r, t.p0) | |
+ arc(t.r, t.p1, t.a1 - t.a0) | |
+ curve(t.r, t.p1, s.r, s.p0)) | |
+ "Z"; | |
} | |
function subgroup(self, f, d, i) { | |
var subgroup = f.call(self, d, i), | |
r = radius.call(self, subgroup, i), | |
a0 = startAngle.call(self, subgroup, i) + d3_svg_arcOffset, | |
a1 = endAngle.call(self, subgroup, i) + d3_svg_arcOffset; | |
return { | |
r: r, | |
a0: a0, | |
a1: a1, | |
p0: [r * Math.cos(a0), r * Math.sin(a0)], | |
p1: [r * Math.cos(a1), r * Math.sin(a1)] | |
}; | |
} | |
function equals(a, b) { | |
return a.a0 == b.a0 && a.a1 == b.a1; | |
} | |
function arc(r, p, a) { | |
return "A" + r + "," + r + " 0 " + +(a > Math.PI) + ",1 " + p; | |
} | |
function curve(r0, p0, r1, p1) { | |
return "Q 0,0 " + p1; | |
} | |
chord.radius = function(v) { | |
if (!arguments.length) return radius; | |
radius = d3_functor(v); | |
return chord; | |
}; | |
chord.source = function(v) { | |
if (!arguments.length) return source; | |
source = d3_functor(v); | |
return chord; | |
}; | |
chord.target = function(v) { | |
if (!arguments.length) return target; | |
target = d3_functor(v); | |
return chord; | |
}; | |
chord.startAngle = function(v) { | |
if (!arguments.length) return startAngle; | |
startAngle = d3_functor(v); | |
return chord; | |
}; | |
chord.endAngle = function(v) { | |
if (!arguments.length) return endAngle; | |
endAngle = d3_functor(v); | |
return chord; | |
}; | |
return chord; | |
}; | |
function d3_svg_chordSource(d) { | |
return d.source; | |
} | |
function d3_svg_chordTarget(d) { | |
return d.target; | |
} | |
function d3_svg_chordRadius(d) { | |
return d.radius; | |
} | |
function d3_svg_chordStartAngle(d) { | |
return d.startAngle; | |
} | |
function d3_svg_chordEndAngle(d) { | |
return d.endAngle; | |
} | |
d3.svg.diagonal = function() { | |
var source = d3_svg_chordSource, | |
target = d3_svg_chordTarget, | |
projection = d3_svg_diagonalProjection; | |
function diagonal(d, i) { | |
var p0 = source.call(this, d, i), | |
p3 = target.call(this, d, i), | |
m = (p0.y + p3.y) / 2, | |
p = [p0, {x: p0.x, y: m}, {x: p3.x, y: m}, p3]; | |
p = p.map(projection); | |
return "M" + p[0] + "C" + p[1] + " " + p[2] + " " + p[3]; | |
} | |
diagonal.source = function(x) { | |
if (!arguments.length) return source; | |
source = d3_functor(x); | |
return diagonal; | |
}; | |
diagonal.target = function(x) { | |
if (!arguments.length) return target; | |
target = d3_functor(x); | |
return diagonal; | |
}; | |
diagonal.projection = function(x) { | |
if (!arguments.length) return projection; | |
projection = x; | |
return diagonal; | |
}; | |
return diagonal; | |
}; | |
function d3_svg_diagonalProjection(d) { | |
return [d.x, d.y]; | |
} | |
d3.svg.diagonal.radial = function() { | |
var diagonal = d3.svg.diagonal(), | |
projection = d3_svg_diagonalProjection, | |
projection_ = diagonal.projection; | |
diagonal.projection = function(x) { | |
return arguments.length | |
? projection_(d3_svg_diagonalRadialProjection(projection = x)) | |
: projection; | |
}; | |
return diagonal; | |
}; | |
function d3_svg_diagonalRadialProjection(projection) { | |
return function() { | |
var d = projection.apply(this, arguments), | |
r = d[0], | |
a = d[1] + d3_svg_arcOffset; | |
return [r * Math.cos(a), r * Math.sin(a)]; | |
}; | |
} | |
d3.svg.mouse = d3.mouse; | |
d3.svg.touches = d3.touches; | |
d3.svg.symbol = function() { | |
var type = d3_svg_symbolType, | |
size = d3_svg_symbolSize; | |
function symbol(d, i) { | |
return (d3_svg_symbols.get(type.call(this, d, i)) | |
|| d3_svg_symbolCircle) | |
(size.call(this, d, i)); | |
} | |
symbol.type = function(x) { | |
if (!arguments.length) return type; | |
type = d3_functor(x); | |
return symbol; | |
}; | |
// size of symbol in square pixels | |
symbol.size = function(x) { | |
if (!arguments.length) return size; | |
size = d3_functor(x); | |
return symbol; | |
}; | |
return symbol; | |
}; | |
function d3_svg_symbolSize() { | |
return 64; | |
} | |
function d3_svg_symbolType() { | |
return "circle"; | |
} | |
function d3_svg_symbolCircle(size) { | |
var r = Math.sqrt(size / Math.PI); | |
return "M0," + r | |
+ "A" + r + "," + r + " 0 1,1 0," + (-r) | |
+ "A" + r + "," + r + " 0 1,1 0," + r | |
+ "Z"; | |
} | |
// TODO cross-diagonal? | |
var d3_svg_symbols = d3.map({ | |
"circle": d3_svg_symbolCircle, | |
"cross": function(size) { | |
var r = Math.sqrt(size / 5) / 2; | |
return "M" + -3 * r + "," + -r | |
+ "H" + -r | |
+ "V" + -3 * r | |
+ "H" + r | |
+ "V" + -r | |
+ "H" + 3 * r | |
+ "V" + r | |
+ "H" + r | |
+ "V" + 3 * r | |
+ "H" + -r | |
+ "V" + r | |
+ "H" + -3 * r | |
+ "Z"; | |
}, | |
"diamond": function(size) { | |
var ry = Math.sqrt(size / (2 * d3_svg_symbolTan30)), | |
rx = ry * d3_svg_symbolTan30; | |
return "M0," + -ry | |
+ "L" + rx + ",0" | |
+ " 0," + ry | |
+ " " + -rx + ",0" | |
+ "Z"; | |
}, | |
"square": function(size) { | |
var r = Math.sqrt(size) / 2; | |
return "M" + -r + "," + -r | |
+ "L" + r + "," + -r | |
+ " " + r + "," + r | |
+ " " + -r + "," + r | |
+ "Z"; | |
}, | |
"triangle-down": function(size) { | |
var rx = Math.sqrt(size / d3_svg_symbolSqrt3), | |
ry = rx * d3_svg_symbolSqrt3 / 2; | |
return "M0," + ry | |
+ "L" + rx +"," + -ry | |
+ " " + -rx + "," + -ry | |
+ "Z"; | |
}, | |
"triangle-up": function(size) { | |
var rx = Math.sqrt(size / d3_svg_symbolSqrt3), | |
ry = rx * d3_svg_symbolSqrt3 / 2; | |
return "M0," + -ry | |
+ "L" + rx +"," + ry | |
+ " " + -rx + "," + ry | |
+ "Z"; | |
} | |
}); | |
d3.svg.symbolTypes = d3_svg_symbols.keys(); | |
var d3_svg_symbolSqrt3 = Math.sqrt(3), | |
d3_svg_symbolTan30 = Math.tan(30 * Math.PI / 180); | |
d3.svg.axis = function() { | |
var scale = d3.scale.linear(), | |
orient = "bottom", | |
tickMajorSize = 6, | |
tickMinorSize = 6, | |
tickEndSize = 6, | |
tickPadding = 3, | |
tickArguments_ = [10], | |
tickValues = null, | |
tickFormat_, | |
tickSubdivide = 0; | |
function axis(g) { | |
g.each(function() { | |
var g = d3.select(this); | |
// Ticks, or domain values for ordinal scales. | |
var ticks = tickValues == null ? (scale.ticks ? scale.ticks.apply(scale, tickArguments_) : scale.domain()) : tickValues, | |
tickFormat = tickFormat_ == null ? (scale.tickFormat ? scale.tickFormat.apply(scale, tickArguments_) : String) : tickFormat_; | |
// Minor ticks. | |
var subticks = d3_svg_axisSubdivide(scale, ticks, tickSubdivide), | |
subtick = g.selectAll(".minor").data(subticks, String), | |
subtickEnter = subtick.enter().insert("line", "g").attr("class", "tick minor").style("opacity", 1e-6), | |
subtickExit = d3.transition(subtick.exit()).style("opacity", 1e-6).remove(), | |
subtickUpdate = d3.transition(subtick).style("opacity", 1); | |
// Major ticks. | |
var tick = g.selectAll("g").data(ticks, String), | |
tickEnter = tick.enter().insert("g", "path").style("opacity", 1e-6), | |
tickExit = d3.transition(tick.exit()).style("opacity", 1e-6).remove(), | |
tickUpdate = d3.transition(tick).style("opacity", 1), | |
tickTransform; | |
// Domain. | |
var range = d3_scaleRange(scale), | |
path = g.selectAll(".domain").data([0]), | |
pathEnter = path.enter().append("path").attr("class", "domain"), | |
pathUpdate = d3.transition(path); | |
// Stash a snapshot of the new scale, and retrieve the old snapshot. | |
var scale1 = scale.copy(), | |
scale0 = this.__chart__ || scale1; | |
this.__chart__ = scale1; | |
tickEnter.append("line").attr("class", "tick"); | |
tickEnter.append("text"); | |
tickUpdate.select("text").text(tickFormat); | |
switch (orient) { | |
case "bottom": { | |
tickTransform = d3_svg_axisX; | |
subtickEnter.attr("y2", tickMinorSize); | |
subtickUpdate.attr("x2", 0).attr("y2", tickMinorSize); | |
tickEnter.select("line").attr("y2", tickMajorSize); | |
tickEnter.select("text").attr("y", Math.max(tickMajorSize, 0) + tickPadding); | |
tickUpdate.select("line").attr("x2", 0).attr("y2", tickMajorSize); | |
tickUpdate.select("text").attr("x", 0).attr("y", Math.max(tickMajorSize, 0) + tickPadding).attr("dy", ".71em").attr("text-anchor", "middle"); | |
pathUpdate.attr("d", "M" + range[0] + "," + tickEndSize + "V0H" + range[1] + "V" + tickEndSize); | |
break; | |
} | |
case "top": { | |
tickTransform = d3_svg_axisX; | |
subtickEnter.attr("y2", -tickMinorSize); | |
subtickUpdate.attr("x2", 0).attr("y2", -tickMinorSize); | |
tickEnter.select("line").attr("y2", -tickMajorSize); | |
tickEnter.select("text").attr("y", -(Math.max(tickMajorSize, 0) + tickPadding)); | |
tickUpdate.select("line").attr("x2", 0).attr("y2", -tickMajorSize); | |
tickUpdate.select("text").attr("x", 0).attr("y", -(Math.max(tickMajorSize, 0) + tickPadding)).attr("dy", "0em").attr("text-anchor", "middle"); | |
pathUpdate.attr("d", "M" + range[0] + "," + -tickEndSize + "V0H" + range[1] + "V" + -tickEndSize); | |
break; | |
} | |
case "left": { | |
tickTransform = d3_svg_axisY; | |
subtickEnter.attr("x2", -tickMinorSize); | |
subtickUpdate.attr("x2", -tickMinorSize).attr("y2", 0); | |
tickEnter.select("line").attr("x2", -tickMajorSize); | |
tickEnter.select("text").attr("x", -(Math.max(tickMajorSize, 0) + tickPadding)); | |
tickUpdate.select("line").attr("x2", -tickMajorSize).attr("y2", 0); | |
tickUpdate.select("text").attr("x", -(Math.max(tickMajorSize, 0) + tickPadding)).attr("y", 0).attr("dy", ".32em").attr("text-anchor", "end"); | |
pathUpdate.attr("d", "M" + -tickEndSize + "," + range[0] + "H0V" + range[1] + "H" + -tickEndSize); | |
break; | |
} | |
case "right": { | |
tickTransform = d3_svg_axisY; | |
subtickEnter.attr("x2", tickMinorSize); | |
subtickUpdate.attr("x2", tickMinorSize).attr("y2", 0); | |
tickEnter.select("line").attr("x2", tickMajorSize); | |
tickEnter.select("text").attr("x", Math.max(tickMajorSize, 0) + tickPadding); | |
tickUpdate.select("line").attr("x2", tickMajorSize).attr("y2", 0); | |
tickUpdate.select("text").attr("x", Math.max(tickMajorSize, 0) + tickPadding).attr("y", 0).attr("dy", ".32em").attr("text-anchor", "start"); | |
pathUpdate.attr("d", "M" + tickEndSize + "," + range[0] + "H0V" + range[1] + "H" + tickEndSize); | |
break; | |
} | |
} | |
// For quantitative scales: | |
// - enter new ticks from the old scale | |
// - exit old ticks to the new scale | |
if (scale.ticks) { | |
tickEnter.call(tickTransform, scale0); | |
tickUpdate.call(tickTransform, scale1); | |
tickExit.call(tickTransform, scale1); | |
subtickEnter.call(tickTransform, scale0); | |
subtickUpdate.call(tickTransform, scale1); | |
subtickExit.call(tickTransform, scale1); | |
} | |
// For ordinal scales: | |
// - any entering ticks are undefined in the old scale | |
// - any exiting ticks are undefined in the new scale | |
// Therefore, we only need to transition updating ticks. | |
else { | |
var dx = scale1.rangeBand() / 2, x = function(d) { return scale1(d) + dx; }; | |
tickEnter.call(tickTransform, x); | |
tickUpdate.call(tickTransform, x); | |
} | |
}); | |
} | |
axis.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = x; | |
return axis; | |
}; | |
axis.orient = function(x) { | |
if (!arguments.length) return orient; | |
orient = x; | |
return axis; | |
}; | |
axis.ticks = function() { | |
if (!arguments.length) return tickArguments_; | |
tickArguments_ = arguments; | |
return axis; | |
}; | |
axis.tickValues = function(x) { | |
if (!arguments.length) return tickValues; | |
tickValues = x; | |
return axis; | |
}; | |
axis.tickFormat = function(x) { | |
if (!arguments.length) return tickFormat_; | |
tickFormat_ = x; | |
return axis; | |
}; | |
axis.tickSize = function(x, y, z) { | |
if (!arguments.length) return tickMajorSize; | |
var n = arguments.length - 1; | |
tickMajorSize = +x; | |
tickMinorSize = n > 1 ? +y : tickMajorSize; | |
tickEndSize = n > 0 ? +arguments[n] : tickMajorSize; | |
return axis; | |
}; | |
axis.tickPadding = function(x) { | |
if (!arguments.length) return tickPadding; | |
tickPadding = +x; | |
return axis; | |
}; | |
axis.tickSubdivide = function(x) { | |
if (!arguments.length) return tickSubdivide; | |
tickSubdivide = +x; | |
return axis; | |
}; | |
return axis; | |
}; | |
function d3_svg_axisX(selection, x) { | |
selection.attr("transform", function(d) { return "translate(" + x(d) + ",0)"; }); | |
} | |
function d3_svg_axisY(selection, y) { | |
selection.attr("transform", function(d) { return "translate(0," + y(d) + ")"; }); | |
} | |
function d3_svg_axisSubdivide(scale, ticks, m) { | |
subticks = []; | |
if (m && ticks.length > 1) { | |
var extent = d3_scaleExtent(scale.domain()), | |
subticks, | |
i = -1, | |
n = ticks.length, | |
d = (ticks[1] - ticks[0]) / ++m, | |
j, | |
v; | |
while (++i < n) { | |
for (j = m; --j > 0;) { | |
if ((v = +ticks[i] - j * d) >= extent[0]) { | |
subticks.push(v); | |
} | |
} | |
} | |
for (--i, j = 0; ++j < m && (v = +ticks[i] + j * d) < extent[1];) { | |
subticks.push(v); | |
} | |
} | |
return subticks; | |
} | |
d3.svg.brush = function() { | |
var event = d3_eventDispatch(brush, "brushstart", "brush", "brushend"), | |
x = null, // x-scale, optional | |
y = null, // y-scale, optional | |
resizes = d3_svg_brushResizes[0], | |
extent = [[0, 0], [0, 0]], // [x0, y0], [x1, y1], in pixels (integers) | |
extentDomain; // the extent in data space, lazily created | |
function brush(g) { | |
g.each(function() { | |
var g = d3.select(this), | |
bg = g.selectAll(".background").data([0]), | |
fg = g.selectAll(".extent").data([0]), | |
tz = g.selectAll(".resize").data(resizes, String), | |
e; | |
// Prepare the brush container for events. | |
g | |
.style("pointer-events", "all") | |
.on("mousedown.brush", brushstart) | |
.on("touchstart.brush", brushstart); | |
// An invisible, mouseable area for starting a new brush. | |
bg.enter().append("rect") | |
.attr("class", "background") | |
.style("visibility", "hidden") | |
.style("cursor", "crosshair"); | |
// The visible brush extent; style this as you like! | |
fg.enter().append("rect") | |
.attr("class", "extent") | |
.style("cursor", "move"); | |
// More invisible rects for resizing the extent. | |
tz.enter().append("g") | |
.attr("class", function(d) { return "resize " + d; }) | |
.style("cursor", function(d) { return d3_svg_brushCursor[d]; }) | |
.append("rect") | |
.attr("x", function(d) { return /[ew]$/.test(d) ? -3 : null; }) | |
.attr("y", function(d) { return /^[ns]/.test(d) ? -3 : null; }) | |
.attr("width", 6) | |
.attr("height", 6) | |
.style("visibility", "hidden"); | |
// Show or hide the resizers. | |
tz.style("display", brush.empty() ? "none" : null); | |
// Remove any superfluous resizers. | |
tz.exit().remove(); | |
// Initialize the background to fill the defined range. | |
// If the range isn't defined, you can post-process. | |
if (x) { | |
e = d3_scaleRange(x); | |
bg.attr("x", e[0]).attr("width", e[1] - e[0]); | |
redrawX(g); | |
} | |
if (y) { | |
e = d3_scaleRange(y); | |
bg.attr("y", e[0]).attr("height", e[1] - e[0]); | |
redrawY(g); | |
} | |
redraw(g); | |
}); | |
} | |
function redraw(g) { | |
g.selectAll(".resize").attr("transform", function(d) { | |
return "translate(" + extent[+/e$/.test(d)][0] + "," + extent[+/^s/.test(d)][1] + ")"; | |
}); | |
} | |
function redrawX(g) { | |
g.select(".extent").attr("x", extent[0][0]); | |
g.selectAll(".extent,.n>rect,.s>rect").attr("width", extent[1][0] - extent[0][0]); | |
} | |
function redrawY(g) { | |
g.select(".extent").attr("y", extent[0][1]); | |
g.selectAll(".extent,.e>rect,.w>rect").attr("height", extent[1][1] - extent[0][1]); | |
} | |
function brushstart() { | |
var target = this, | |
eventTarget = d3.select(d3.event.target), | |
event_ = event.of(target, arguments), | |
g = d3.select(target), | |
resizing = eventTarget.datum(), | |
resizingX = !/^(n|s)$/.test(resizing) && x, | |
resizingY = !/^(e|w)$/.test(resizing) && y, | |
dragging = eventTarget.classed("extent"), | |
center, | |
origin = mouse(), | |
offset; | |
var w = d3.select(window) | |
.on("mousemove.brush", brushmove) | |
.on("mouseup.brush", brushend) | |
.on("touchmove.brush", brushmove) | |
.on("touchend.brush", brushend) | |
.on("keydown.brush", keydown) | |
.on("keyup.brush", keyup); | |
// If the extent was clicked on, drag rather than brush; | |
// store the point between the mouse and extent origin instead. | |
if (dragging) { | |
origin[0] = extent[0][0] - origin[0]; | |
origin[1] = extent[0][1] - origin[1]; | |
} | |
// If a resizer was clicked on, record which side is to be resized. | |
// Also, set the origin to the opposite side. | |
else if (resizing) { | |
var ex = +/w$/.test(resizing), | |
ey = +/^n/.test(resizing); | |
offset = [extent[1 - ex][0] - origin[0], extent[1 - ey][1] - origin[1]]; | |
origin[0] = extent[ex][0]; | |
origin[1] = extent[ey][1]; | |
} | |
// If the ALT key is down when starting a brush, the center is at the mouse. | |
else if (d3.event.altKey) center = origin.slice(); | |
// Propagate the active cursor to the body for the drag duration. | |
g.style("pointer-events", "none").selectAll(".resize").style("display", null); | |
d3.select("body").style("cursor", eventTarget.style("cursor")); | |
// Notify listeners. | |
event_({type: "brushstart"}); | |
brushmove(); | |
d3_eventCancel(); | |
function mouse() { | |
var touches = d3.event.changedTouches; | |
return touches ? d3.touches(target, touches)[0] : d3.mouse(target); | |
} | |
function keydown() { | |
if (d3.event.keyCode == 32) { | |
if (!dragging) { | |
center = null; | |
origin[0] -= extent[1][0]; | |
origin[1] -= extent[1][1]; | |
dragging = 2; | |
} | |
d3_eventCancel(); | |
} | |
} | |
function keyup() { | |
if (d3.event.keyCode == 32 && dragging == 2) { | |
origin[0] += extent[1][0]; | |
origin[1] += extent[1][1]; | |
dragging = 0; | |
d3_eventCancel(); | |
} | |
} | |
function brushmove() { | |
var point = mouse(), | |
moved = false; | |
// Preserve the offset for thick resizers. | |
if (offset) { | |
point[0] += offset[0]; | |
point[1] += offset[1]; | |
} | |
if (!dragging) { | |
// If needed, determine the center from the current extent. | |
if (d3.event.altKey) { | |
if (!center) center = [(extent[0][0] + extent[1][0]) / 2, (extent[0][1] + extent[1][1]) / 2]; | |
// Update the origin, for when the ALT key is released. | |
origin[0] = extent[+(point[0] < center[0])][0]; | |
origin[1] = extent[+(point[1] < center[1])][1]; | |
} | |
// When the ALT key is released, we clear the center. | |
else center = null; | |
} | |
// Update the brush extent for each dimension. | |
if (resizingX && move1(point, x, 0)) { | |
redrawX(g); | |
moved = true; | |
} | |
if (resizingY && move1(point, y, 1)) { | |
redrawY(g); | |
moved = true; | |
} | |
// Final redraw and notify listeners. | |
if (moved) { | |
redraw(g); | |
event_({type: "brush", mode: dragging ? "move" : "resize"}); | |
} | |
} | |
function move1(point, scale, i) { | |
var range = d3_scaleRange(scale), | |
r0 = range[0], | |
r1 = range[1], | |
position = origin[i], | |
size = extent[1][i] - extent[0][i], | |
min, | |
max; | |
// When dragging, reduce the range by the extent size and position. | |
if (dragging) { | |
r0 -= position; | |
r1 -= size + position; | |
} | |
// Clamp the point so that the extent fits within the range extent. | |
min = Math.max(r0, Math.min(r1, point[i])); | |
// Compute the new extent bounds. | |
if (dragging) { | |
max = (min += position) + size; | |
} else { | |
// If the ALT key is pressed, then preserve the center of the extent. | |
if (center) position = Math.max(r0, Math.min(r1, 2 * center[i] - min)); | |
// Compute the min and max of the position and point. | |
if (position < min) { | |
max = min; | |
min = position; | |
} else { | |
max = position; | |
} | |
} | |
// Update the stored bounds. | |
if (extent[0][i] !== min || extent[1][i] !== max) { | |
extentDomain = null; | |
extent[0][i] = min; | |
extent[1][i] = max; | |
return true; | |
} | |
} | |
function brushend() { | |
brushmove(); | |
// reset the cursor styles | |
g.style("pointer-events", "all").selectAll(".resize").style("display", brush.empty() ? "none" : null); | |
d3.select("body").style("cursor", null); | |
w .on("mousemove.brush", null) | |
.on("mouseup.brush", null) | |
.on("touchmove.brush", null) | |
.on("touchend.brush", null) | |
.on("keydown.brush", null) | |
.on("keyup.brush", null); | |
event_({type: "brushend"}); | |
d3_eventCancel(); | |
} | |
} | |
brush.x = function(z) { | |
if (!arguments.length) return x; | |
x = z; | |
resizes = d3_svg_brushResizes[!x << 1 | !y]; // fore! | |
return brush; | |
}; | |
brush.y = function(z) { | |
if (!arguments.length) return y; | |
y = z; | |
resizes = d3_svg_brushResizes[!x << 1 | !y]; // fore! | |
return brush; | |
}; | |
brush.extent = function(z) { | |
var x0, x1, y0, y1, t; | |
// Invert the pixel extent to data-space. | |
if (!arguments.length) { | |
z = extentDomain || extent; | |
if (x) { | |
x0 = z[0][0], x1 = z[1][0]; | |
if (!extentDomain) { | |
x0 = extent[0][0], x1 = extent[1][0]; | |
if (x.invert) x0 = x.invert(x0), x1 = x.invert(x1); | |
if (x1 < x0) t = x0, x0 = x1, x1 = t; | |
} | |
} | |
if (y) { | |
y0 = z[0][1], y1 = z[1][1]; | |
if (!extentDomain) { | |
y0 = extent[0][1], y1 = extent[1][1]; | |
if (y.invert) y0 = y.invert(y0), y1 = y.invert(y1); | |
if (y1 < y0) t = y0, y0 = y1, y1 = t; | |
} | |
} | |
return x && y ? [[x0, y0], [x1, y1]] : x ? [x0, x1] : y && [y0, y1]; | |
} | |
// Scale the data-space extent to pixels. | |
extentDomain = [[0, 0], [0, 0]]; | |
if (x) { | |
x0 = z[0], x1 = z[1]; | |
if (y) x0 = x0[0], x1 = x1[0]; | |
extentDomain[0][0] = x0, extentDomain[1][0] = x1; | |
if (x.invert) x0 = x(x0), x1 = x(x1); | |
if (x1 < x0) t = x0, x0 = x1, x1 = t; | |
extent[0][0] = x0 | 0, extent[1][0] = x1 | 0; | |
} | |
if (y) { | |
y0 = z[0], y1 = z[1]; | |
if (x) y0 = y0[1], y1 = y1[1]; | |
extentDomain[0][1] = y0, extentDomain[1][1] = y1; | |
if (y.invert) y0 = y(y0), y1 = y(y1); | |
if (y1 < y0) t = y0, y0 = y1, y1 = t; | |
extent[0][1] = y0 | 0, extent[1][1] = y1 | 0; | |
} | |
return brush; | |
}; | |
brush.clear = function() { | |
extentDomain = null; | |
extent[0][0] = | |
extent[0][1] = | |
extent[1][0] = | |
extent[1][1] = 0; | |
return brush; | |
}; | |
brush.empty = function() { | |
return (x && extent[0][0] === extent[1][0]) | |
|| (y && extent[0][1] === extent[1][1]); | |
}; | |
return d3.rebind(brush, event, "on"); | |
}; | |
var d3_svg_brushCursor = { | |
n: "ns-resize", | |
e: "ew-resize", | |
s: "ns-resize", | |
w: "ew-resize", | |
nw: "nwse-resize", | |
ne: "nesw-resize", | |
se: "nwse-resize", | |
sw: "nesw-resize" | |
}; | |
var d3_svg_brushResizes = [ | |
["n", "e", "s", "w", "nw", "ne", "se", "sw"], | |
["e", "w"], | |
["n", "s"], | |
[] | |
]; | |
d3.behavior = {}; | |
// TODO Track touch points by identifier. | |
d3.behavior.drag = function() { | |
var event = d3_eventDispatch(drag, "drag", "dragstart", "dragend"), | |
origin = null; | |
function drag() { | |
this.on("mousedown.drag", mousedown) | |
.on("touchstart.drag", mousedown); | |
} | |
function mousedown() { | |
var target = this, | |
event_ = event.of(target, arguments), | |
eventTarget = d3.event.target, | |
offset, | |
origin_ = point(), | |
moved = 0; | |
var w = d3.select(window) | |
.on("mousemove.drag", dragmove) | |
.on("touchmove.drag", dragmove) | |
.on("mouseup.drag", dragend, true) | |
.on("touchend.drag", dragend, true); | |
if (origin) { | |
offset = origin.apply(target, arguments); | |
offset = [offset.x - origin_[0], offset.y - origin_[1]]; | |
} else { | |
offset = [0, 0]; | |
} | |
d3_eventCancel(); | |
event_({type: "dragstart"}); | |
function point() { | |
var p = target.parentNode, | |
t = d3.event.changedTouches; | |
return t ? d3.touches(p, t)[0] : d3.mouse(p); | |
} | |
function dragmove() { | |
if (!target.parentNode) return dragend(); // target removed from DOM | |
var p = point(), | |
dx = p[0] - origin_[0], | |
dy = p[1] - origin_[1]; | |
moved |= dx | dy; | |
origin_ = p; | |
d3_eventCancel(); | |
event_({type: "drag", x: p[0] + offset[0], y: p[1] + offset[1], dx: dx, dy: dy}); | |
} | |
function dragend() { | |
event_({type: "dragend"}); | |
// if moved, prevent the mouseup (and possibly click) from propagating | |
if (moved) { | |
d3_eventCancel(); | |
if (d3.event.target === eventTarget) w.on("click.drag", click, true); | |
} | |
w .on("mousemove.drag", null) | |
.on("touchmove.drag", null) | |
.on("mouseup.drag", null) | |
.on("touchend.drag", null); | |
} | |
// prevent the subsequent click from propagating (e.g., for anchors) | |
function click() { | |
d3_eventCancel(); | |
w.on("click.drag", null); | |
} | |
} | |
drag.origin = function(x) { | |
if (!arguments.length) return origin; | |
origin = x; | |
return drag; | |
}; | |
return d3.rebind(drag, event, "on"); | |
}; | |
d3.behavior.zoom = function() { | |
var translate = [0, 0], | |
translate0, // translate when we started zooming (to avoid drift) | |
scale = 1, | |
scale0, // scale when we started touching | |
scaleExtent = d3_behavior_zoomInfinity, | |
event = d3_eventDispatch(zoom, "zoom"), | |
x0, | |
x1, | |
y0, | |
y1, | |
touchtime; // time of last touchstart (to detect double-tap) | |
function zoom() { | |
this | |
.on("mousedown.zoom", mousedown) | |
.on("mousewheel.zoom", mousewheel) | |
.on("mousemove.zoom", mousemove) | |
.on("DOMMouseScroll.zoom", mousewheel) | |
.on("dblclick.zoom", dblclick) | |
.on("touchstart.zoom", touchstart) | |
.on("touchmove.zoom", touchmove) | |
.on("touchend.zoom", touchstart); | |
} | |
zoom.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = x.map(Number); | |
return zoom; | |
}; | |
zoom.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return zoom; | |
}; | |
zoom.scaleExtent = function(x) { | |
if (!arguments.length) return scaleExtent; | |
scaleExtent = x == null ? d3_behavior_zoomInfinity : x.map(Number); | |
return zoom; | |
}; | |
zoom.x = function(z) { | |
if (!arguments.length) return x1; | |
x1 = z; | |
x0 = z.copy(); | |
return zoom; | |
}; | |
zoom.y = function(z) { | |
if (!arguments.length) return y1; | |
y1 = z; | |
y0 = z.copy(); | |
return zoom; | |
}; | |
function location(p) { | |
return [(p[0] - translate[0]) / scale, (p[1] - translate[1]) / scale]; | |
} | |
function point(l) { | |
return [l[0] * scale + translate[0], l[1] * scale + translate[1]]; | |
} | |
function scaleTo(s) { | |
scale = Math.max(scaleExtent[0], Math.min(scaleExtent[1], s)); | |
} | |
function translateTo(p, l) { | |
l = point(l); | |
translate[0] += p[0] - l[0]; | |
translate[1] += p[1] - l[1]; | |
} | |
function dispatch(event) { | |
if (x1) x1.domain(x0.range().map(function(x) { return (x - translate[0]) / scale; }).map(x0.invert)); | |
if (y1) y1.domain(y0.range().map(function(y) { return (y - translate[1]) / scale; }).map(y0.invert)); | |
d3.event.preventDefault(); | |
event({type: "zoom", scale: scale, translate: translate}); | |
} | |
function mousedown() { | |
var target = this, | |
event_ = event.of(target, arguments), | |
eventTarget = d3.event.target, | |
moved = 0, | |
w = d3.select(window).on("mousemove.zoom", mousemove).on("mouseup.zoom", mouseup), | |
l = location(d3.mouse(target)); | |
window.focus(); | |
d3_eventCancel(); | |
function mousemove() { | |
moved = 1; | |
translateTo(d3.mouse(target), l); | |
dispatch(event_); | |
} | |
function mouseup() { | |
if (moved) d3_eventCancel(); | |
w.on("mousemove.zoom", null).on("mouseup.zoom", null); | |
if (moved && d3.event.target === eventTarget) w.on("click.zoom", click, true); | |
} | |
function click() { | |
d3_eventCancel(); | |
w.on("click.zoom", null); | |
} | |
} | |
function mousewheel() { | |
if (!translate0) translate0 = location(d3.mouse(this)); | |
scaleTo(Math.pow(2, d3_behavior_zoomDelta() * .002) * scale); | |
translateTo(d3.mouse(this), translate0); | |
dispatch(event.of(this, arguments)); | |
} | |
function mousemove() { | |
translate0 = null; | |
} | |
function dblclick() { | |
var p = d3.mouse(this), l = location(p); | |
scaleTo(d3.event.shiftKey ? scale / 2 : scale * 2); | |
translateTo(p, l); | |
dispatch(event.of(this, arguments)); | |
} | |
function touchstart() { | |
var touches = d3.touches(this), | |
now = Date.now(); | |
scale0 = scale; | |
translate0 = {}; | |
touches.forEach(function(t) { translate0[t.identifier] = location(t); }); | |
d3_eventCancel(); | |
if ((touches.length === 1) && (now - touchtime < 500)) { // dbltap | |
var p = touches[0], l = location(touches[0]); | |
scaleTo(scale * 2); | |
translateTo(p, l); | |
dispatch(event.of(this, arguments)); | |
} | |
touchtime = now; | |
} | |
function touchmove() { | |
var touches = d3.touches(this), | |
p0 = touches[0], | |
l0 = translate0[p0.identifier]; | |
if (p1 = touches[1]) { | |
var p1, l1 = translate0[p1.identifier]; | |
p0 = [(p0[0] + p1[0]) / 2, (p0[1] + p1[1]) / 2]; | |
l0 = [(l0[0] + l1[0]) / 2, (l0[1] + l1[1]) / 2]; | |
scaleTo(d3.event.scale * scale0); | |
} | |
translateTo(p0, l0); | |
dispatch(event.of(this, arguments)); | |
} | |
return d3.rebind(zoom, event, "on"); | |
}; | |
var d3_behavior_zoomDiv, // for interpreting mousewheel events | |
d3_behavior_zoomInfinity = [0, Infinity]; // default scale extent | |
function d3_behavior_zoomDelta() { | |
// mousewheel events are totally broken! | |
// https://bugs.webkit.org/show_bug.cgi?id=40441 | |
// not only that, but Chrome and Safari differ in re. to acceleration! | |
if (!d3_behavior_zoomDiv) { | |
d3_behavior_zoomDiv = d3.select("body").append("div") | |
.style("visibility", "hidden") | |
.style("top", 0) | |
.style("height", 0) | |
.style("width", 0) | |
.style("overflow-y", "scroll") | |
.append("div") | |
.style("height", "2000px") | |
.node().parentNode; | |
} | |
var e = d3.event, delta; | |
try { | |
d3_behavior_zoomDiv.scrollTop = 1000; | |
d3_behavior_zoomDiv.dispatchEvent(e); | |
delta = 1000 - d3_behavior_zoomDiv.scrollTop; | |
} catch (error) { | |
delta = e.wheelDelta || (-e.detail * 5); | |
} | |
return delta; | |
} | |
d3.layout = {}; | |
// Implements hierarchical edge bundling using Holten's algorithm. For each | |
// input link, a path is computed that travels through the tree, up the parent | |
// hierarchy to the least common ancestor, and then back down to the destination | |
// node. Each path is simply an array of nodes. | |
d3.layout.bundle = function() { | |
return function(links) { | |
var paths = [], | |
i = -1, | |
n = links.length; | |
while (++i < n) paths.push(d3_layout_bundlePath(links[i])); | |
return paths; | |
}; | |
}; | |
function d3_layout_bundlePath(link) { | |
var start = link.source, | |
end = link.target, | |
lca = d3_layout_bundleLeastCommonAncestor(start, end), | |
points = [start]; | |
while (start !== lca) { | |
start = start.parent; | |
points.push(start); | |
} | |
var k = points.length; | |
while (end !== lca) { | |
points.splice(k, 0, end); | |
end = end.parent; | |
} | |
return points; | |
} | |
function d3_layout_bundleAncestors(node) { | |
var ancestors = [], | |
parent = node.parent; | |
while (parent != null) { | |
ancestors.push(node); | |
node = parent; | |
parent = parent.parent; | |
} | |
ancestors.push(node); | |
return ancestors; | |
} | |
function d3_layout_bundleLeastCommonAncestor(a, b) { | |
if (a === b) return a; | |
var aNodes = d3_layout_bundleAncestors(a), | |
bNodes = d3_layout_bundleAncestors(b), | |
aNode = aNodes.pop(), | |
bNode = bNodes.pop(), | |
sharedNode = null; | |
while (aNode === bNode) { | |
sharedNode = aNode; | |
aNode = aNodes.pop(); | |
bNode = bNodes.pop(); | |
} | |
return sharedNode; | |
} | |
d3.layout.chord = function() { | |
var chord = {}, | |
chords, | |
groups, | |
matrix, | |
n, | |
padding = 0, | |
sortGroups, | |
sortSubgroups, | |
sortChords; | |
function relayout() { | |
var subgroups = {}, | |
groupSums = [], | |
groupIndex = d3.range(n), | |
subgroupIndex = [], | |
k, | |
x, | |
x0, | |
i, | |
j; | |
chords = []; | |
groups = []; | |
// Compute the sum. | |
k = 0, i = -1; while (++i < n) { | |
x = 0, j = -1; while (++j < n) { | |
x += matrix[i][j]; | |
} | |
groupSums.push(x); | |
subgroupIndex.push(d3.range(n)); | |
k += x; | |
} | |
// Sort groups… | |
if (sortGroups) { | |
groupIndex.sort(function(a, b) { | |
return sortGroups(groupSums[a], groupSums[b]); | |
}); | |
} | |
// Sort subgroups… | |
if (sortSubgroups) { | |
subgroupIndex.forEach(function(d, i) { | |
d.sort(function(a, b) { | |
return sortSubgroups(matrix[i][a], matrix[i][b]); | |
}); | |
}); | |
} | |
// Convert the sum to scaling factor for [0, 2pi]. | |
// TODO Allow start and end angle to be specified. | |
// TODO Allow padding to be specified as percentage? | |
k = (2 * Math.PI - padding * n) / k; | |
// Compute the start and end angle for each group and subgroup. | |
// Note: Opera has a bug reordering object literal properties! | |
x = 0, i = -1; while (++i < n) { | |
x0 = x, j = -1; while (++j < n) { | |
var di = groupIndex[i], | |
dj = subgroupIndex[di][j], | |
v = matrix[di][dj], | |
a0 = x, | |
a1 = x += v * k; | |
subgroups[di + "-" + dj] = { | |
index: di, | |
subindex: dj, | |
startAngle: a0, | |
endAngle: a1, | |
value: v | |
}; | |
} | |
groups[di] = { | |
index: di, | |
startAngle: x0, | |
endAngle: x, | |
value: (x - x0) / k | |
}; | |
x += padding; | |
} | |
// Generate chords for each (non-empty) subgroup-subgroup link. | |
i = -1; while (++i < n) { | |
j = i - 1; while (++j < n) { | |
var source = subgroups[i + "-" + j], | |
target = subgroups[j + "-" + i]; | |
if (source.value || target.value) { | |
chords.push(source.value < target.value | |
? {source: target, target: source} | |
: {source: source, target: target}); | |
} | |
} | |
} | |
if (sortChords) resort(); | |
} | |
function resort() { | |
chords.sort(function(a, b) { | |
return sortChords( | |
(a.source.value + a.target.value) / 2, | |
(b.source.value + b.target.value) / 2); | |
}); | |
} | |
chord.matrix = function(x) { | |
if (!arguments.length) return matrix; | |
n = (matrix = x) && matrix.length; | |
chords = groups = null; | |
return chord; | |
}; | |
chord.padding = function(x) { | |
if (!arguments.length) return padding; | |
padding = x; | |
chords = groups = null; | |
return chord; | |
}; | |
chord.sortGroups = function(x) { | |
if (!arguments.length) return sortGroups; | |
sortGroups = x; | |
chords = groups = null; | |
return chord; | |
}; | |
chord.sortSubgroups = function(x) { | |
if (!arguments.length) return sortSubgroups; | |
sortSubgroups = x; | |
chords = null; | |
return chord; | |
}; | |
chord.sortChords = function(x) { | |
if (!arguments.length) return sortChords; | |
sortChords = x; | |
if (chords) resort(); | |
return chord; | |
}; | |
chord.chords = function() { | |
if (!chords) relayout(); | |
return chords; | |
}; | |
chord.groups = function() { | |
if (!groups) relayout(); | |
return groups; | |
}; | |
return chord; | |
}; | |
// A rudimentary force layout using Gauss-Seidel. | |
d3.layout.force = function() { | |
var force = {}, | |
event = d3.dispatch("start", "tick", "end"), | |
size = [1, 1], | |
drag, | |
alpha, | |
friction = .9, | |
linkDistance = d3_layout_forceLinkDistance, | |
linkStrength = d3_layout_forceLinkStrength, | |
charge = -30, | |
gravity = .1, | |
theta = .8, | |
interval, | |
nodes = [], | |
links = [], | |
distances, | |
strengths, | |
charges; | |
function repulse(node) { | |
return function(quad, x1, y1, x2, y2) { | |
if (quad.point !== node) { | |
var dx = quad.cx - node.x, | |
dy = quad.cy - node.y, | |
dn = 1 / Math.sqrt(dx * dx + dy * dy); | |
/* Barnes-Hut criterion. */ | |
if ((x2 - x1) * dn < theta) { | |
var k = quad.charge * dn * dn; | |
node.px -= dx * k; | |
node.py -= dy * k; | |
return true; | |
} | |
if (quad.point && isFinite(dn)) { | |
var k = quad.pointCharge * dn * dn; | |
node.px -= dx * k; | |
node.py -= dy * k; | |
} | |
} | |
return !quad.charge; | |
}; | |
} | |
force.tick = function() { | |
// simulated annealing, basically | |
if ((alpha *= .99) < .005) { | |
event.end({type: "end", alpha: alpha = 0}); | |
return true; | |
} | |
var n = nodes.length, | |
m = links.length, | |
q, | |
i, // current index | |
o, // current object | |
s, // current source | |
t, // current target | |
l, // current distance | |
k, // current force | |
x, // x-distance | |
y; // y-distance | |
// gauss-seidel relaxation for links | |
for (i = 0; i < m; ++i) { | |
o = links[i]; | |
s = o.source; | |
t = o.target; | |
x = t.x - s.x; | |
y = t.y - s.y; | |
if (l = (x * x + y * y)) { | |
l = alpha * strengths[i] * ((l = Math.sqrt(l)) - distances[i]) / l; | |
x *= l; | |
y *= l; | |
t.x -= x * (k = s.weight / (t.weight + s.weight)); | |
t.y -= y * k; | |
s.x += x * (k = 1 - k); | |
s.y += y * k; | |
} | |
} | |
// apply gravity forces | |
if (k = alpha * gravity) { | |
x = size[0] / 2; | |
y = size[1] / 2; | |
i = -1; if (k) while (++i < n) { | |
o = nodes[i]; | |
o.x += (x - o.x) * k; | |
o.y += (y - o.y) * k; | |
} | |
} | |
// compute quadtree center of mass and apply charge forces | |
if (charge) { | |
d3_layout_forceAccumulate(q = d3.geom.quadtree(nodes), alpha, charges); | |
i = -1; while (++i < n) { | |
if (!(o = nodes[i]).fixed) { | |
q.visit(repulse(o)); | |
} | |
} | |
} | |
// position verlet integration | |
i = -1; while (++i < n) { | |
o = nodes[i]; | |
if (o.fixed) { | |
o.x = o.px; | |
o.y = o.py; | |
} else { | |
o.x -= (o.px - (o.px = o.x)) * friction; | |
o.y -= (o.py - (o.py = o.y)) * friction; | |
} | |
} | |
event.tick({type: "tick", alpha: alpha}); | |
}; | |
force.nodes = function(x) { | |
if (!arguments.length) return nodes; | |
nodes = x; | |
return force; | |
}; | |
force.links = function(x) { | |
if (!arguments.length) return links; | |
links = x; | |
return force; | |
}; | |
force.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return force; | |
}; | |
force.linkDistance = function(x) { | |
if (!arguments.length) return linkDistance; | |
linkDistance = d3_functor(x); | |
return force; | |
}; | |
// For backwards-compatibility. | |
force.distance = force.linkDistance; | |
force.linkStrength = function(x) { | |
if (!arguments.length) return linkStrength; | |
linkStrength = d3_functor(x); | |
return force; | |
}; | |
force.friction = function(x) { | |
if (!arguments.length) return friction; | |
friction = x; | |
return force; | |
}; | |
force.charge = function(x) { | |
if (!arguments.length) return charge; | |
charge = typeof x === "function" ? x : +x; | |
return force; | |
}; | |
force.gravity = function(x) { | |
if (!arguments.length) return gravity; | |
gravity = x; | |
return force; | |
}; | |
force.theta = function(x) { | |
if (!arguments.length) return theta; | |
theta = x; | |
return force; | |
}; | |
force.alpha = function(x) { | |
if (!arguments.length) return alpha; | |
if (alpha) { // if we're already running | |
if (x > 0) alpha = x; // we might keep it hot | |
else alpha = 0; // or, next tick will dispatch "end" | |
} else if (x > 0) { // otherwise, fire it up! | |
event.start({type: "start", alpha: alpha = x}); | |
d3.timer(force.tick); | |
} | |
return force; | |
}; | |
force.start = function() { | |
var i, | |
j, | |
n = nodes.length, | |
m = links.length, | |
w = size[0], | |
h = size[1], | |
neighbors, | |
o; | |
for (i = 0; i < n; ++i) { | |
(o = nodes[i]).index = i; | |
o.weight = 0; | |
} | |
distances = []; | |
strengths = []; | |
for (i = 0; i < m; ++i) { | |
o = links[i]; | |
if (typeof o.source == "number") o.source = nodes[o.source]; | |
if (typeof o.target == "number") o.target = nodes[o.target]; | |
distances[i] = linkDistance.call(this, o, i); | |
strengths[i] = linkStrength.call(this, o, i); | |
++o.source.weight; | |
++o.target.weight; | |
} | |
for (i = 0; i < n; ++i) { | |
o = nodes[i]; | |
if (isNaN(o.x)) o.x = position("x", w); | |
if (isNaN(o.y)) o.y = position("y", h); | |
if (isNaN(o.px)) o.px = o.x; | |
if (isNaN(o.py)) o.py = o.y; | |
} | |
charges = []; | |
if (typeof charge === "function") { | |
for (i = 0; i < n; ++i) { | |
charges[i] = +charge.call(this, nodes[i], i); | |
} | |
} else { | |
for (i = 0; i < n; ++i) { | |
charges[i] = charge; | |
} | |
} | |
// initialize node position based on first neighbor | |
function position(dimension, size) { | |
var neighbors = neighbor(i), | |
j = -1, | |
m = neighbors.length, | |
x; | |
while (++j < m) if (!isNaN(x = neighbors[j][dimension])) return x; | |
return Math.random() * size; | |
} | |
// initialize neighbors lazily | |
function neighbor() { | |
if (!neighbors) { | |
neighbors = []; | |
for (j = 0; j < n; ++j) { | |
neighbors[j] = []; | |
} | |
for (j = 0; j < m; ++j) { | |
var o = links[j]; | |
neighbors[o.source.index].push(o.target); | |
neighbors[o.target.index].push(o.source); | |
} | |
} | |
return neighbors[i]; | |
} | |
return force.resume(); | |
}; | |
force.resume = function() { | |
return force.alpha(.1); | |
}; | |
force.stop = function() { | |
return force.alpha(0); | |
}; | |
// use `node.call(force.drag)` to make nodes draggable | |
force.drag = function() { | |
if (!drag) drag = d3.behavior.drag() | |
.origin(d3_identity) | |
.on("dragstart", dragstart) | |
.on("drag", d3_layout_forceDrag) | |
.on("dragend", d3_layout_forceDragEnd); | |
this.on("mouseover.force", d3_layout_forceDragOver) | |
.on("mouseout.force", d3_layout_forceDragOut) | |
.call(drag); | |
}; | |
function dragstart(d) { | |
d3_layout_forceDragOver(d3_layout_forceDragNode = d); | |
d3_layout_forceDragForce = force; | |
} | |
return d3.rebind(force, event, "on"); | |
}; | |
var d3_layout_forceDragForce, | |
d3_layout_forceDragNode; | |
function d3_layout_forceDragOver(d) { | |
d.fixed |= 2; | |
} | |
function d3_layout_forceDragOut(d) { | |
if (d !== d3_layout_forceDragNode) d.fixed &= 1; | |
} | |
function d3_layout_forceDragEnd() { | |
d3_layout_forceDragNode.fixed &= 1; | |
d3_layout_forceDragForce = d3_layout_forceDragNode = null; | |
} | |
function d3_layout_forceDrag() { | |
d3_layout_forceDragNode.px = d3.event.x; | |
d3_layout_forceDragNode.py = d3.event.y; | |
d3_layout_forceDragForce.resume(); // restart annealing | |
} | |
function d3_layout_forceAccumulate(quad, alpha, charges) { | |
var cx = 0, | |
cy = 0; | |
quad.charge = 0; | |
if (!quad.leaf) { | |
var nodes = quad.nodes, | |
n = nodes.length, | |
i = -1, | |
c; | |
while (++i < n) { | |
c = nodes[i]; | |
if (c == null) continue; | |
d3_layout_forceAccumulate(c, alpha, charges); | |
quad.charge += c.charge; | |
cx += c.charge * c.cx; | |
cy += c.charge * c.cy; | |
} | |
} | |
if (quad.point) { | |
// jitter internal nodes that are coincident | |
if (!quad.leaf) { | |
quad.point.x += Math.random() - .5; | |
quad.point.y += Math.random() - .5; | |
} | |
var k = alpha * charges[quad.point.index]; | |
quad.charge += quad.pointCharge = k; | |
cx += k * quad.point.x; | |
cy += k * quad.point.y; | |
} | |
quad.cx = cx / quad.charge; | |
quad.cy = cy / quad.charge; | |
} | |
function d3_layout_forceLinkDistance(link) { | |
return 20; | |
} | |
function d3_layout_forceLinkStrength(link) { | |
return 1; | |
} | |
d3.layout.partition = function() { | |
var hierarchy = d3.layout.hierarchy(), | |
size = [1, 1]; // width, height | |
function position(node, x, dx, dy) { | |
var children = node.children; | |
node.x = x; | |
node.y = node.depth * dy; | |
node.dx = dx; | |
node.dy = dy; | |
if (children && (n = children.length)) { | |
var i = -1, | |
n, | |
c, | |
d; | |
dx = node.value ? dx / node.value : 0; | |
while (++i < n) { | |
position(c = children[i], x, d = c.value * dx, dy); | |
x += d; | |
} | |
} | |
} | |
function depth(node) { | |
var children = node.children, | |
d = 0; | |
if (children && (n = children.length)) { | |
var i = -1, | |
n; | |
while (++i < n) d = Math.max(d, depth(children[i])); | |
} | |
return 1 + d; | |
} | |
function partition(d, i) { | |
var nodes = hierarchy.call(this, d, i); | |
position(nodes[0], 0, size[0], size[1] / depth(nodes[0])); | |
return nodes; | |
} | |
partition.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return partition; | |
}; | |
return d3_layout_hierarchyRebind(partition, hierarchy); | |
}; | |
d3.layout.pie = function() { | |
var value = Number, | |
sort = d3_layout_pieSortByValue, | |
startAngle = 0, | |
endAngle = 2 * Math.PI; | |
function pie(data, i) { | |
// Compute the numeric values for each data element. | |
var values = data.map(function(d, i) { return +value.call(pie, d, i); }); | |
// Compute the start angle. | |
var a = +(typeof startAngle === "function" | |
? startAngle.apply(this, arguments) | |
: startAngle); | |
// Compute the angular scale factor: from value to radians. | |
var k = ((typeof endAngle === "function" | |
? endAngle.apply(this, arguments) | |
: endAngle) - startAngle) | |
/ d3.sum(values); | |
// Optionally sort the data. | |
var index = d3.range(data.length); | |
if (sort != null) index.sort(sort === d3_layout_pieSortByValue | |
? function(i, j) { return values[j] - values[i]; } | |
: function(i, j) { return sort(data[i], data[j]); }); | |
// Compute the arcs! | |
// They are stored in the original data's order. | |
var arcs = []; | |
index.forEach(function(i) { | |
arcs[i] = { | |
data: data[i], | |
value: d = values[i], | |
startAngle: a, | |
endAngle: a += d * k | |
}; | |
}); | |
return arcs; | |
} | |
/** | |
* Specifies the value function *x*, which returns a nonnegative numeric value | |
* for each datum. The default value function is `Number`. The value function | |
* is passed two arguments: the current datum and the current index. | |
*/ | |
pie.value = function(x) { | |
if (!arguments.length) return value; | |
value = x; | |
return pie; | |
}; | |
/** | |
* Specifies a sort comparison operator *x*. The comparator is passed two data | |
* elements from the data array, a and b; it returns a negative value if a is | |
* less than b, a positive value if a is greater than b, and zero if a equals | |
* b. | |
*/ | |
pie.sort = function(x) { | |
if (!arguments.length) return sort; | |
sort = x; | |
return pie; | |
}; | |
/** | |
* Specifies the overall start angle of the pie chart. Defaults to 0. The | |
* start angle can be specified either as a constant or as a function; in the | |
* case of a function, it is evaluated once per array (as opposed to per | |
* element). | |
*/ | |
pie.startAngle = function(x) { | |
if (!arguments.length) return startAngle; | |
startAngle = x; | |
return pie; | |
}; | |
/** | |
* Specifies the overall end angle of the pie chart. Defaults to 2Ï€. The | |
* end angle can be specified either as a constant or as a function; in the | |
* case of a function, it is evaluated once per array (as opposed to per | |
* element). | |
*/ | |
pie.endAngle = function(x) { | |
if (!arguments.length) return endAngle; | |
endAngle = x; | |
return pie; | |
}; | |
return pie; | |
}; | |
var d3_layout_pieSortByValue = {}; | |
// data is two-dimensional array of x,y; we populate y0 | |
d3.layout.stack = function() { | |
var values = d3_identity, | |
order = d3_layout_stackOrderDefault, | |
offset = d3_layout_stackOffsetZero, | |
out = d3_layout_stackOut, | |
x = d3_layout_stackX, | |
y = d3_layout_stackY; | |
function stack(data, index) { | |
// Convert series to canonical two-dimensional representation. | |
var series = data.map(function(d, i) { | |
return values.call(stack, d, i); | |
}); | |
// Convert each series to canonical [[x,y]] representation. | |
var points = series.map(function(d, i) { | |
return d.map(function(v, i) { | |
return [x.call(stack, v, i), y.call(stack, v, i)]; | |
}); | |
}); | |
// Compute the order of series, and permute them. | |
var orders = order.call(stack, points, index); | |
series = d3.permute(series, orders); | |
points = d3.permute(points, orders); | |
// Compute the baseline… | |
var offsets = offset.call(stack, points, index); | |
// And propagate it to other series. | |
var n = series.length, | |
m = series[0].length, | |
i, | |
j, | |
o; | |
for (j = 0; j < m; ++j) { | |
out.call(stack, series[0][j], o = offsets[j], points[0][j][1]); | |
for (i = 1; i < n; ++i) { | |
out.call(stack, series[i][j], o += points[i - 1][j][1], points[i][j][1]); | |
} | |
} | |
return data; | |
} | |
stack.values = function(x) { | |
if (!arguments.length) return values; | |
values = x; | |
return stack; | |
}; | |
stack.order = function(x) { | |
if (!arguments.length) return order; | |
order = typeof x === "function" ? x : d3_layout_stackOrders.get(x) || d3_layout_stackOrderDefault; | |
return stack; | |
}; | |
stack.offset = function(x) { | |
if (!arguments.length) return offset; | |
offset = typeof x === "function" ? x : d3_layout_stackOffsets.get(x) || d3_layout_stackOffsetZero; | |
return stack; | |
}; | |
stack.x = function(z) { | |
if (!arguments.length) return x; | |
x = z; | |
return stack; | |
}; | |
stack.y = function(z) { | |
if (!arguments.length) return y; | |
y = z; | |
return stack; | |
}; | |
stack.out = function(z) { | |
if (!arguments.length) return out; | |
out = z; | |
return stack; | |
}; | |
return stack; | |
} | |
function d3_layout_stackX(d) { | |
return d.x; | |
} | |
function d3_layout_stackY(d) { | |
return d.y; | |
} | |
function d3_layout_stackOut(d, y0, y) { | |
d.y0 = y0; | |
d.y = y; | |
} | |
var d3_layout_stackOrders = d3.map({ | |
"inside-out": function(data) { | |
var n = data.length, | |
i, | |
j, | |
max = data.map(d3_layout_stackMaxIndex), | |
sums = data.map(d3_layout_stackReduceSum), | |
index = d3.range(n).sort(function(a, b) { return max[a] - max[b]; }), | |
top = 0, | |
bottom = 0, | |
tops = [], | |
bottoms = []; | |
for (i = 0; i < n; ++i) { | |
j = index[i]; | |
if (top < bottom) { | |
top += sums[j]; | |
tops.push(j); | |
} else { | |
bottom += sums[j]; | |
bottoms.push(j); | |
} | |
} | |
return bottoms.reverse().concat(tops); | |
}, | |
"reverse": function(data) { | |
return d3.range(data.length).reverse(); | |
}, | |
"default": d3_layout_stackOrderDefault | |
}); | |
var d3_layout_stackOffsets = d3.map({ | |
"silhouette": function(data) { | |
var n = data.length, | |
m = data[0].length, | |
sums = [], | |
max = 0, | |
i, | |
j, | |
o, | |
y0 = []; | |
for (j = 0; j < m; ++j) { | |
for (i = 0, o = 0; i < n; i++) o += data[i][j][1]; | |
if (o > max) max = o; | |
sums.push(o); | |
} | |
for (j = 0; j < m; ++j) { | |
y0[j] = (max - sums[j]) / 2; | |
} | |
return y0; | |
}, | |
"wiggle": function(data) { | |
var n = data.length, | |
x = data[0], | |
m = x.length, | |
max = 0, | |
i, | |
j, | |
k, | |
s1, | |
s2, | |
s3, | |
dx, | |
o, | |
o0, | |
y0 = []; | |
y0[0] = o = o0 = 0; | |
for (j = 1; j < m; ++j) { | |
for (i = 0, s1 = 0; i < n; ++i) s1 += data[i][j][1]; | |
for (i = 0, s2 = 0, dx = x[j][0] - x[j - 1][0]; i < n; ++i) { | |
for (k = 0, s3 = (data[i][j][1] - data[i][j - 1][1]) / (2 * dx); k < i; ++k) { | |
s3 += (data[k][j][1] - data[k][j - 1][1]) / dx; | |
} | |
s2 += s3 * data[i][j][1]; | |
} | |
y0[j] = o -= s1 ? s2 / s1 * dx : 0; | |
if (o < o0) o0 = o; | |
} | |
for (j = 0; j < m; ++j) y0[j] -= o0; | |
return y0; | |
}, | |
"expand": function(data) { | |
var n = data.length, | |
m = data[0].length, | |
k = 1 / n, | |
i, | |
j, | |
o, | |
y0 = []; | |
for (j = 0; j < m; ++j) { | |
for (i = 0, o = 0; i < n; i++) o += data[i][j][1]; | |
if (o) for (i = 0; i < n; i++) data[i][j][1] /= o; | |
else for (i = 0; i < n; i++) data[i][j][1] = k; | |
} | |
for (j = 0; j < m; ++j) y0[j] = 0; | |
return y0; | |
}, | |
"zero": d3_layout_stackOffsetZero | |
}); | |
function d3_layout_stackOrderDefault(data) { | |
return d3.range(data.length); | |
} | |
function d3_layout_stackOffsetZero(data) { | |
var j = -1, | |
m = data[0].length, | |
y0 = []; | |
while (++j < m) y0[j] = 0; | |
return y0; | |
} | |
function d3_layout_stackMaxIndex(array) { | |
var i = 1, | |
j = 0, | |
v = array[0][1], | |
k, | |
n = array.length; | |
for (; i < n; ++i) { | |
if ((k = array[i][1]) > v) { | |
j = i; | |
v = k; | |
} | |
} | |
return j; | |
} | |
function d3_layout_stackReduceSum(d) { | |
return d.reduce(d3_layout_stackSum, 0); | |
} | |
function d3_layout_stackSum(p, d) { | |
return p + d[1]; | |
} | |
d3.layout.histogram = function() { | |
var frequency = true, | |
valuer = Number, | |
ranger = d3_layout_histogramRange, | |
binner = d3_layout_histogramBinSturges; | |
function histogram(data, i) { | |
var bins = [], | |
values = data.map(valuer, this), | |
range = ranger.call(this, values, i), | |
thresholds = binner.call(this, range, values, i), | |
bin, | |
i = -1, | |
n = values.length, | |
m = thresholds.length - 1, | |
k = frequency ? 1 : 1 / n, | |
x; | |
// Initialize the bins. | |
while (++i < m) { | |
bin = bins[i] = []; | |
bin.dx = thresholds[i + 1] - (bin.x = thresholds[i]); | |
bin.y = 0; | |
} | |
// Fill the bins, ignoring values outside the range. | |
if (m > 0) { | |
i = -1; while(++i < n) { | |
x = values[i]; | |
if ((x >= range[0]) && (x <= range[1])) { | |
bin = bins[d3.bisect(thresholds, x, 1, m) - 1]; | |
bin.y += k; | |
bin.push(data[i]); | |
} | |
} | |
} | |
return bins; | |
} | |
// Specifies how to extract a value from the associated data. The default | |
// value function is `Number`, which is equivalent to the identity function. | |
histogram.value = function(x) { | |
if (!arguments.length) return valuer; | |
valuer = x; | |
return histogram; | |
}; | |
// Specifies the range of the histogram. Values outside the specified range | |
// will be ignored. The argument `x` may be specified either as a two-element | |
// array representing the minimum and maximum value of the range, or as a | |
// function that returns the range given the array of values and the current | |
// index `i`. The default range is the extent (minimum and maximum) of the | |
// values. | |
histogram.range = function(x) { | |
if (!arguments.length) return ranger; | |
ranger = d3_functor(x); | |
return histogram; | |
}; | |
// Specifies how to bin values in the histogram. The argument `x` may be | |
// specified as a number, in which case the range of values will be split | |
// uniformly into the given number of bins. Or, `x` may be an array of | |
// threshold values, defining the bins; the specified array must contain the | |
// rightmost (upper) value, thus specifying n + 1 values for n bins. Or, `x` | |
// may be a function which is evaluated, being passed the range, the array of | |
// values, and the current index `i`, returning an array of thresholds. The | |
// default bin function will divide the values into uniform bins using | |
// Sturges' formula. | |
histogram.bins = function(x) { | |
if (!arguments.length) return binner; | |
binner = typeof x === "number" | |
? function(range) { return d3_layout_histogramBinFixed(range, x); } | |
: d3_functor(x); | |
return histogram; | |
}; | |
// Specifies whether the histogram's `y` value is a count (frequency) or a | |
// probability (density). The default value is true. | |
histogram.frequency = function(x) { | |
if (!arguments.length) return frequency; | |
frequency = !!x; | |
return histogram; | |
}; | |
return histogram; | |
}; | |
function d3_layout_histogramBinSturges(range, values) { | |
return d3_layout_histogramBinFixed(range, Math.ceil(Math.log(values.length) / Math.LN2 + 1)); | |
} | |
function d3_layout_histogramBinFixed(range, n) { | |
var x = -1, | |
b = +range[0], | |
m = (range[1] - b) / n, | |
f = []; | |
while (++x <= n) f[x] = m * x + b; | |
return f; | |
} | |
function d3_layout_histogramRange(values) { | |
return [d3.min(values), d3.max(values)]; | |
} | |
d3.layout.hierarchy = function() { | |
var sort = d3_layout_hierarchySort, | |
children = d3_layout_hierarchyChildren, | |
value = d3_layout_hierarchyValue; | |
// Recursively compute the node depth and value. | |
// Also converts the data representation into a standard hierarchy structure. | |
function recurse(data, depth, nodes) { | |
var childs = children.call(hierarchy, data, depth), | |
node = d3_layout_hierarchyInline ? data : {data: data}; | |
node.depth = depth; | |
nodes.push(node); | |
if (childs && (n = childs.length)) { | |
var i = -1, | |
n, | |
c = node.children = [], | |
v = 0, | |
j = depth + 1; | |
while (++i < n) { | |
d = recurse(childs[i], j, nodes); | |
d.parent = node; | |
c.push(d); | |
v += d.value; | |
} | |
if (sort) c.sort(sort); | |
if (value) node.value = v; | |
} else if (value) { | |
node.value = +value.call(hierarchy, data, depth) || 0; | |
} | |
return node; | |
} | |
// Recursively re-evaluates the node value. | |
function revalue(node, depth) { | |
var children = node.children, | |
v = 0; | |
if (children && (n = children.length)) { | |
var i = -1, | |
n, | |
j = depth + 1; | |
while (++i < n) v += revalue(children[i], j); | |
} else if (value) { | |
v = +value.call(hierarchy, d3_layout_hierarchyInline ? node : node.data, depth) || 0; | |
} | |
if (value) node.value = v; | |
return v; | |
} | |
function hierarchy(d) { | |
var nodes = []; | |
recurse(d, 0, nodes); | |
return nodes; | |
} | |
hierarchy.sort = function(x) { | |
if (!arguments.length) return sort; | |
sort = x; | |
return hierarchy; | |
}; | |
hierarchy.children = function(x) { | |
if (!arguments.length) return children; | |
children = x; | |
return hierarchy; | |
}; | |
hierarchy.value = function(x) { | |
if (!arguments.length) return value; | |
value = x; | |
return hierarchy; | |
}; | |
// Re-evaluates the `value` property for the specified hierarchy. | |
hierarchy.revalue = function(root) { | |
revalue(root, 0); | |
return root; | |
}; | |
return hierarchy; | |
}; | |
// A method assignment helper for hierarchy subclasses. | |
function d3_layout_hierarchyRebind(object, hierarchy) { | |
d3.rebind(object, hierarchy, "sort", "children", "value"); | |
// Add an alias for links, for convenience. | |
object.links = d3_layout_hierarchyLinks; | |
// If the new API is used, enabling inlining. | |
object.nodes = function(d) { | |
d3_layout_hierarchyInline = true; | |
return (object.nodes = object)(d); | |
}; | |
return object; | |
} | |
function d3_layout_hierarchyChildren(d) { | |
return d.children; | |
} | |
function d3_layout_hierarchyValue(d) { | |
return d.value; | |
} | |
function d3_layout_hierarchySort(a, b) { | |
return b.value - a.value; | |
} | |
// Returns an array source+target objects for the specified nodes. | |
function d3_layout_hierarchyLinks(nodes) { | |
return d3.merge(nodes.map(function(parent) { | |
return (parent.children || []).map(function(child) { | |
return {source: parent, target: child}; | |
}); | |
})); | |
} | |
// For backwards-compatibility, don't enable inlining by default. | |
var d3_layout_hierarchyInline = false; | |
d3.layout.pack = function() { | |
var hierarchy = d3.layout.hierarchy().sort(d3_layout_packSort), | |
size = [1, 1]; | |
function pack(d, i) { | |
var nodes = hierarchy.call(this, d, i), | |
root = nodes[0]; | |
// Recursively compute the layout. | |
root.x = 0; | |
root.y = 0; | |
d3_layout_packTree(root); | |
// Scale the layout to fit the requested size. | |
var w = size[0], | |
h = size[1], | |
k = 1 / Math.max(2 * root.r / w, 2 * root.r / h); | |
d3_layout_packTransform(root, w / 2, h / 2, k); | |
return nodes; | |
} | |
pack.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return pack; | |
}; | |
return d3_layout_hierarchyRebind(pack, hierarchy); | |
}; | |
function d3_layout_packSort(a, b) { | |
return a.value - b.value; | |
} | |
function d3_layout_packInsert(a, b) { | |
var c = a._pack_next; | |
a._pack_next = b; | |
b._pack_prev = a; | |
b._pack_next = c; | |
c._pack_prev = b; | |
} | |
function d3_layout_packSplice(a, b) { | |
a._pack_next = b; | |
b._pack_prev = a; | |
} | |
function d3_layout_packIntersects(a, b) { | |
var dx = b.x - a.x, | |
dy = b.y - a.y, | |
dr = a.r + b.r; | |
return dr * dr - dx * dx - dy * dy > .001; // within epsilon | |
} | |
function d3_layout_packCircle(nodes) { | |
var xMin = Infinity, | |
xMax = -Infinity, | |
yMin = Infinity, | |
yMax = -Infinity, | |
n = nodes.length, | |
a, b, c, j, k; | |
function bound(node) { | |
xMin = Math.min(node.x - node.r, xMin); | |
xMax = Math.max(node.x + node.r, xMax); | |
yMin = Math.min(node.y - node.r, yMin); | |
yMax = Math.max(node.y + node.r, yMax); | |
} | |
// Create node links. | |
nodes.forEach(d3_layout_packLink); | |
// Create first node. | |
a = nodes[0]; | |
a.x = -a.r; | |
a.y = 0; | |
bound(a); | |
// Create second node. | |
if (n > 1) { | |
b = nodes[1]; | |
b.x = b.r; | |
b.y = 0; | |
bound(b); | |
// Create third node and build chain. | |
if (n > 2) { | |
c = nodes[2]; | |
d3_layout_packPlace(a, b, c); | |
bound(c); | |
d3_layout_packInsert(a, c); | |
a._pack_prev = c; | |
d3_layout_packInsert(c, b); | |
b = a._pack_next; | |
// Now iterate through the rest. | |
for (var i = 3; i < n; i++) { | |
d3_layout_packPlace(a, b, c = nodes[i]); | |
// Search for the closest intersection. | |
var isect = 0, s1 = 1, s2 = 1; | |
for (j = b._pack_next; j !== b; j = j._pack_next, s1++) { | |
if (d3_layout_packIntersects(j, c)) { | |
isect = 1; | |
break; | |
} | |
} | |
if (isect == 1) { | |
for (k = a._pack_prev; k !== j._pack_prev; k = k._pack_prev, s2++) { | |
if (d3_layout_packIntersects(k, c)) { | |
break; | |
} | |
} | |
} | |
// Update node chain. | |
if (isect) { | |
if (s1 < s2 || (s1 == s2 && b.r < a.r)) d3_layout_packSplice(a, b = j); | |
else d3_layout_packSplice(a = k, b); | |
i--; | |
} else { | |
d3_layout_packInsert(a, c); | |
b = c; | |
bound(c); | |
} | |
} | |
} | |
} | |
// Re-center the circles and return the encompassing radius. | |
var cx = (xMin + xMax) / 2, | |
cy = (yMin + yMax) / 2, | |
cr = 0; | |
for (var i = 0; i < n; i++) { | |
var node = nodes[i]; | |
node.x -= cx; | |
node.y -= cy; | |
cr = Math.max(cr, node.r + Math.sqrt(node.x * node.x + node.y * node.y)); | |
} | |
// Remove node links. | |
nodes.forEach(d3_layout_packUnlink); | |
return cr; | |
} | |
function d3_layout_packLink(node) { | |
node._pack_next = node._pack_prev = node; | |
} | |
function d3_layout_packUnlink(node) { | |
delete node._pack_next; | |
delete node._pack_prev; | |
} | |
function d3_layout_packTree(node) { | |
var children = node.children; | |
if (children && children.length) { | |
children.forEach(d3_layout_packTree); | |
node.r = d3_layout_packCircle(children); | |
} else { | |
node.r = Math.sqrt(node.value); | |
} | |
} | |
function d3_layout_packTransform(node, x, y, k) { | |
var children = node.children; | |
node.x = (x += k * node.x); | |
node.y = (y += k * node.y); | |
node.r *= k; | |
if (children) { | |
var i = -1, n = children.length; | |
while (++i < n) d3_layout_packTransform(children[i], x, y, k); | |
} | |
} | |
function d3_layout_packPlace(a, b, c) { | |
var db = a.r + c.r, | |
dx = b.x - a.x, | |
dy = b.y - a.y; | |
if (db && (dx || dy)) { | |
var da = b.r + c.r, | |
dc = Math.sqrt(dx * dx + dy * dy), | |
cos = Math.max(-1, Math.min(1, (db * db + dc * dc - da * da) / (2 * db * dc))), | |
theta = Math.acos(cos), | |
x = cos * (db /= dc), | |
y = Math.sin(theta) * db; | |
c.x = a.x + x * dx + y * dy; | |
c.y = a.y + x * dy - y * dx; | |
} else { | |
c.x = a.x + db; | |
c.y = a.y; | |
} | |
} | |
// Implements a hierarchical layout using the cluster (or dendrogram) | |
// algorithm. | |
d3.layout.cluster = function() { | |
var hierarchy = d3.layout.hierarchy().sort(null).value(null), | |
separation = d3_layout_treeSeparation, | |
size = [1, 1]; // width, height | |
function cluster(d, i) { | |
var nodes = hierarchy.call(this, d, i), | |
root = nodes[0], | |
previousNode, | |
x = 0, | |
kx, | |
ky; | |
// First walk, computing the initial x & y values. | |
d3_layout_treeVisitAfter(root, function(node) { | |
var children = node.children; | |
if (children && children.length) { | |
node.x = d3_layout_clusterX(children); | |
node.y = d3_layout_clusterY(children); | |
} else { | |
node.x = previousNode ? x += separation(node, previousNode) : 0; | |
node.y = 0; | |
previousNode = node; | |
} | |
}); | |
// Compute the left-most, right-most, and depth-most nodes for extents. | |
var left = d3_layout_clusterLeft(root), | |
right = d3_layout_clusterRight(root), | |
x0 = left.x - separation(left, right) / 2, | |
x1 = right.x + separation(right, left) / 2; | |
// Second walk, normalizing x & y to the desired size. | |
d3_layout_treeVisitAfter(root, function(node) { | |
node.x = (node.x - x0) / (x1 - x0) * size[0]; | |
node.y = (1 - (root.y ? node.y / root.y : 1)) * size[1]; | |
}); | |
return nodes; | |
} | |
cluster.separation = function(x) { | |
if (!arguments.length) return separation; | |
separation = x; | |
return cluster; | |
}; | |
cluster.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return cluster; | |
}; | |
return d3_layout_hierarchyRebind(cluster, hierarchy); | |
}; | |
function d3_layout_clusterY(children) { | |
return 1 + d3.max(children, function(child) { | |
return child.y; | |
}); | |
} | |
function d3_layout_clusterX(children) { | |
return children.reduce(function(x, child) { | |
return x + child.x; | |
}, 0) / children.length; | |
} | |
function d3_layout_clusterLeft(node) { | |
var children = node.children; | |
return children && children.length ? d3_layout_clusterLeft(children[0]) : node; | |
} | |
function d3_layout_clusterRight(node) { | |
var children = node.children, n; | |
return children && (n = children.length) ? d3_layout_clusterRight(children[n - 1]) : node; | |
} | |
// Node-link tree diagram using the Reingold-Tilford "tidy" algorithm | |
d3.layout.tree = function() { | |
var hierarchy = d3.layout.hierarchy().sort(null).value(null), | |
separation = d3_layout_treeSeparation, | |
size = [1, 1]; // width, height | |
function tree(d, i) { | |
var nodes = hierarchy.call(this, d, i), | |
root = nodes[0]; | |
function firstWalk(node, previousSibling) { | |
var children = node.children, | |
layout = node._tree; | |
if (children && (n = children.length)) { | |
var n, | |
firstChild = children[0], | |
previousChild, | |
ancestor = firstChild, | |
child, | |
i = -1; | |
while (++i < n) { | |
child = children[i]; | |
firstWalk(child, previousChild); | |
ancestor = apportion(child, previousChild, ancestor); | |
previousChild = child; | |
} | |
d3_layout_treeShift(node); | |
var midpoint = .5 * (firstChild._tree.prelim + child._tree.prelim); | |
if (previousSibling) { | |
layout.prelim = previousSibling._tree.prelim + separation(node, previousSibling); | |
layout.mod = layout.prelim - midpoint; | |
} else { | |
layout.prelim = midpoint; | |
} | |
} else { | |
if (previousSibling) { | |
layout.prelim = previousSibling._tree.prelim + separation(node, previousSibling); | |
} | |
} | |
} | |
function secondWalk(node, x) { | |
node.x = node._tree.prelim + x; | |
var children = node.children; | |
if (children && (n = children.length)) { | |
var i = -1, | |
n; | |
x += node._tree.mod; | |
while (++i < n) { | |
secondWalk(children[i], x); | |
} | |
} | |
} | |
function apportion(node, previousSibling, ancestor) { | |
if (previousSibling) { | |
var vip = node, | |
vop = node, | |
vim = previousSibling, | |
vom = node.parent.children[0], | |
sip = vip._tree.mod, | |
sop = vop._tree.mod, | |
sim = vim._tree.mod, | |
som = vom._tree.mod, | |
shift; | |
while (vim = d3_layout_treeRight(vim), vip = d3_layout_treeLeft(vip), vim && vip) { | |
vom = d3_layout_treeLeft(vom); | |
vop = d3_layout_treeRight(vop); | |
vop._tree.ancestor = node; | |
shift = vim._tree.prelim + sim - vip._tree.prelim - sip + separation(vim, vip); | |
if (shift > 0) { | |
d3_layout_treeMove(d3_layout_treeAncestor(vim, node, ancestor), node, shift); | |
sip += shift; | |
sop += shift; | |
} | |
sim += vim._tree.mod; | |
sip += vip._tree.mod; | |
som += vom._tree.mod; | |
sop += vop._tree.mod; | |
} | |
if (vim && !d3_layout_treeRight(vop)) { | |
vop._tree.thread = vim; | |
vop._tree.mod += sim - sop; | |
} | |
if (vip && !d3_layout_treeLeft(vom)) { | |
vom._tree.thread = vip; | |
vom._tree.mod += sip - som; | |
ancestor = node; | |
} | |
} | |
return ancestor; | |
} | |
// Initialize temporary layout variables. | |
d3_layout_treeVisitAfter(root, function(node, previousSibling) { | |
node._tree = { | |
ancestor: node, | |
prelim: 0, | |
mod: 0, | |
change: 0, | |
shift: 0, | |
number: previousSibling ? previousSibling._tree.number + 1 : 0 | |
}; | |
}); | |
// Compute the layout using Buchheim et al.'s algorithm. | |
firstWalk(root); | |
secondWalk(root, -root._tree.prelim); | |
// Compute the left-most, right-most, and depth-most nodes for extents. | |
var left = d3_layout_treeSearch(root, d3_layout_treeLeftmost), | |
right = d3_layout_treeSearch(root, d3_layout_treeRightmost), | |
deep = d3_layout_treeSearch(root, d3_layout_treeDeepest), | |
x0 = left.x - separation(left, right) / 2, | |
x1 = right.x + separation(right, left) / 2, | |
y1 = deep.depth || 1; | |
// Clear temporary layout variables; transform x and y. | |
d3_layout_treeVisitAfter(root, function(node) { | |
node.x = (node.x - x0) / (x1 - x0) * size[0]; | |
node.y = node.depth / y1 * size[1]; | |
delete node._tree; | |
}); | |
return nodes; | |
} | |
tree.separation = function(x) { | |
if (!arguments.length) return separation; | |
separation = x; | |
return tree; | |
}; | |
tree.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return tree; | |
}; | |
return d3_layout_hierarchyRebind(tree, hierarchy); | |
}; | |
function d3_layout_treeSeparation(a, b) { | |
return a.parent == b.parent ? 1 : 2; | |
} | |
// function d3_layout_treeSeparationRadial(a, b) { | |
// return (a.parent == b.parent ? 1 : 2) / a.depth; | |
// } | |
function d3_layout_treeLeft(node) { | |
var children = node.children; | |
return children && children.length ? children[0] : node._tree.thread; | |
} | |
function d3_layout_treeRight(node) { | |
var children = node.children, | |
n; | |
return children && (n = children.length) ? children[n - 1] : node._tree.thread; | |
} | |
function d3_layout_treeSearch(node, compare) { | |
var children = node.children; | |
if (children && (n = children.length)) { | |
var child, | |
n, | |
i = -1; | |
while (++i < n) { | |
if (compare(child = d3_layout_treeSearch(children[i], compare), node) > 0) { | |
node = child; | |
} | |
} | |
} | |
return node; | |
} | |
function d3_layout_treeRightmost(a, b) { | |
return a.x - b.x; | |
} | |
function d3_layout_treeLeftmost(a, b) { | |
return b.x - a.x; | |
} | |
function d3_layout_treeDeepest(a, b) { | |
return a.depth - b.depth; | |
} | |
function d3_layout_treeVisitAfter(node, callback) { | |
function visit(node, previousSibling) { | |
var children = node.children; | |
if (children && (n = children.length)) { | |
var child, | |
previousChild = null, | |
i = -1, | |
n; | |
while (++i < n) { | |
child = children[i]; | |
visit(child, previousChild); | |
previousChild = child; | |
} | |
} | |
callback(node, previousSibling); | |
} | |
visit(node, null); | |
} | |
function d3_layout_treeShift(node) { | |
var shift = 0, | |
change = 0, | |
children = node.children, | |
i = children.length, | |
child; | |
while (--i >= 0) { | |
child = children[i]._tree; | |
child.prelim += shift; | |
child.mod += shift; | |
shift += child.shift + (change += child.change); | |
} | |
} | |
function d3_layout_treeMove(ancestor, node, shift) { | |
ancestor = ancestor._tree; | |
node = node._tree; | |
var change = shift / (node.number - ancestor.number); | |
ancestor.change += change; | |
node.change -= change; | |
node.shift += shift; | |
node.prelim += shift; | |
node.mod += shift; | |
} | |
function d3_layout_treeAncestor(vim, node, ancestor) { | |
return vim._tree.ancestor.parent == node.parent | |
? vim._tree.ancestor | |
: ancestor; | |
} | |
// Squarified Treemaps by Mark Bruls, Kees Huizing, and Jarke J. van Wijk | |
// Modified to support a target aspect ratio by Jeff Heer | |
d3.layout.treemap = function() { | |
var hierarchy = d3.layout.hierarchy(), | |
round = Math.round, | |
size = [1, 1], // width, height | |
padding = null, | |
pad = d3_layout_treemapPadNull, | |
sticky = false, | |
stickies, | |
ratio = 0.5 * (1 + Math.sqrt(5)); // golden ratio | |
// Compute the area for each child based on value & scale. | |
function scale(children, k) { | |
var i = -1, | |
n = children.length, | |
child, | |
area; | |
while (++i < n) { | |
area = (child = children[i]).value * (k < 0 ? 0 : k); | |
child.area = isNaN(area) || area <= 0 ? 0 : area; | |
} | |
} | |
// Recursively arranges the specified node's children into squarified rows. | |
function squarify(node) { | |
var children = node.children; | |
if (children && children.length) { | |
var rect = pad(node), | |
row = [], | |
remaining = children.slice(), // copy-on-write | |
child, | |
best = Infinity, // the best row score so far | |
score, // the current row score | |
u = Math.min(rect.dx, rect.dy), // initial orientation | |
n; | |
scale(remaining, rect.dx * rect.dy / node.value); | |
row.area = 0; | |
while ((n = remaining.length) > 0) { | |
row.push(child = remaining[n - 1]); | |
row.area += child.area; | |
if ((score = worst(row, u)) <= best) { // continue with this orientation | |
remaining.pop(); | |
best = score; | |
} else { // abort, and try a different orientation | |
row.area -= row.pop().area; | |
position(row, u, rect, false); | |
u = Math.min(rect.dx, rect.dy); | |
row.length = row.area = 0; | |
best = Infinity; | |
} | |
} | |
if (row.length) { | |
position(row, u, rect, true); | |
row.length = row.area = 0; | |
} | |
children.forEach(squarify); | |
} | |
} | |
// Recursively resizes the specified node's children into existing rows. | |
// Preserves the existing layout! | |
function stickify(node) { | |
var children = node.children; | |
if (children && children.length) { | |
var rect = pad(node), | |
remaining = children.slice(), // copy-on-write | |
child, | |
row = []; | |
scale(remaining, rect.dx * rect.dy / node.value); | |
row.area = 0; | |
while (child = remaining.pop()) { | |
row.push(child); | |
row.area += child.area; | |
if (child.z != null) { | |
position(row, child.z ? rect.dx : rect.dy, rect, !remaining.length); | |
row.length = row.area = 0; | |
} | |
} | |
children.forEach(stickify); | |
} | |
} | |
// Computes the score for the specified row, as the worst aspect ratio. | |
function worst(row, u) { | |
var s = row.area, | |
r, | |
rmax = 0, | |
rmin = Infinity, | |
i = -1, | |
n = row.length; | |
while (++i < n) { | |
if (!(r = row[i].area)) continue; | |
if (r < rmin) rmin = r; | |
if (r > rmax) rmax = r; | |
} | |
s *= s; | |
u *= u; | |
return s | |
? Math.max((u * rmax * ratio) / s, s / (u * rmin * ratio)) | |
: Infinity; | |
} | |
// Positions the specified row of nodes. Modifies `rect`. | |
function position(row, u, rect, flush) { | |
var i = -1, | |
n = row.length, | |
x = rect.x, | |
y = rect.y, | |
v = u ? round(row.area / u) : 0, | |
o; | |
if (u == rect.dx) { // horizontal subdivision | |
if (flush || v > rect.dy) v = rect.dy; // over+underflow | |
while (++i < n) { | |
o = row[i]; | |
o.x = x; | |
o.y = y; | |
o.dy = v; | |
x += o.dx = Math.min(rect.x + rect.dx - x, v ? round(o.area / v) : 0); | |
} | |
o.z = true; | |
o.dx += rect.x + rect.dx - x; // rounding error | |
rect.y += v; | |
rect.dy -= v; | |
} else { // vertical subdivision | |
if (flush || v > rect.dx) v = rect.dx; // over+underflow | |
while (++i < n) { | |
o = row[i]; | |
o.x = x; | |
o.y = y; | |
o.dx = v; | |
y += o.dy = Math.min(rect.y + rect.dy - y, v ? round(o.area / v) : 0); | |
} | |
o.z = false; | |
o.dy += rect.y + rect.dy - y; // rounding error | |
rect.x += v; | |
rect.dx -= v; | |
} | |
} | |
function treemap(d) { | |
var nodes = stickies || hierarchy(d), | |
root = nodes[0]; | |
root.x = 0; | |
root.y = 0; | |
root.dx = size[0]; | |
root.dy = size[1]; | |
if (stickies) hierarchy.revalue(root); | |
scale([root], root.dx * root.dy / root.value); | |
(stickies ? stickify : squarify)(root); | |
if (sticky) stickies = nodes; | |
return nodes; | |
} | |
treemap.size = function(x) { | |
if (!arguments.length) return size; | |
size = x; | |
return treemap; | |
}; | |
treemap.padding = function(x) { | |
if (!arguments.length) return padding; | |
function padFunction(node) { | |
var p = x.call(treemap, node, node.depth); | |
return p == null | |
? d3_layout_treemapPadNull(node) | |
: d3_layout_treemapPad(node, typeof p === "number" ? [p, p, p, p] : p); | |
} | |
function padConstant(node) { | |
return d3_layout_treemapPad(node, x); | |
} | |
var type; | |
pad = (padding = x) == null ? d3_layout_treemapPadNull | |
: (type = typeof x) === "function" ? padFunction | |
: type === "number" ? (x = [x, x, x, x], padConstant) | |
: padConstant; | |
return treemap; | |
}; | |
treemap.round = function(x) { | |
if (!arguments.length) return round != Number; | |
round = x ? Math.round : Number; | |
return treemap; | |
}; | |
treemap.sticky = function(x) { | |
if (!arguments.length) return sticky; | |
sticky = x; | |
stickies = null; | |
return treemap; | |
}; | |
treemap.ratio = function(x) { | |
if (!arguments.length) return ratio; | |
ratio = x; | |
return treemap; | |
}; | |
return d3_layout_hierarchyRebind(treemap, hierarchy); | |
}; | |
function d3_layout_treemapPadNull(node) { | |
return {x: node.x, y: node.y, dx: node.dx, dy: node.dy}; | |
} | |
function d3_layout_treemapPad(node, padding) { | |
var x = node.x + padding[3], | |
y = node.y + padding[0], | |
dx = node.dx - padding[1] - padding[3], | |
dy = node.dy - padding[0] - padding[2]; | |
if (dx < 0) { x += dx / 2; dx = 0; } | |
if (dy < 0) { y += dy / 2; dy = 0; } | |
return {x: x, y: y, dx: dx, dy: dy}; | |
} | |
d3.csv = function(url, callback) { | |
d3.text(url, "text/csv", function(text) { | |
callback(text && d3.csv.parse(text)); | |
}); | |
}; | |
d3.csv.parse = function(text) { | |
var header; | |
return d3.csv.parseRows(text, function(row, i) { | |
if (i) { | |
var o = {}, j = -1, m = header.length; | |
while (++j < m) o[header[j]] = row[j]; | |
return o; | |
} else { | |
header = row; | |
return null; | |
} | |
}); | |
}; | |
d3.csv.parseRows = function(text, f) { | |
var EOL = {}, // sentinel value for end-of-line | |
EOF = {}, // sentinel value for end-of-file | |
rows = [], // output rows | |
re = /\r\n|[,\r\n]/g, // field separator regex | |
n = 0, // the current line number | |
t, // the current token | |
eol; // is the current token followed by EOL? | |
re.lastIndex = 0; // work-around bug in FF 3.6 | |
/** @private Returns the next token. */ | |
function token() { | |
if (re.lastIndex >= text.length) return EOF; // special case: end of file | |
if (eol) { eol = false; return EOL; } // special case: end of line | |
// special case: quotes | |
var j = re.lastIndex; | |
if (text.charCodeAt(j) === 34) { | |
var i = j; | |
while (i++ < text.length) { | |
if (text.charCodeAt(i) === 34) { | |
if (text.charCodeAt(i + 1) !== 34) break; | |
i++; | |
} | |
} | |
re.lastIndex = i + 2; | |
var c = text.charCodeAt(i + 1); | |
if (c === 13) { | |
eol = true; | |
if (text.charCodeAt(i + 2) === 10) re.lastIndex++; | |
} else if (c === 10) { | |
eol = true; | |
} | |
return text.substring(j + 1, i).replace(/""/g, "\""); | |
} | |
// common case | |
var m = re.exec(text); | |
if (m) { | |
eol = m[0].charCodeAt(0) !== 44; | |
return text.substring(j, m.index); | |
} | |
re.lastIndex = text.length; | |
return text.substring(j); | |
} | |
while ((t = token()) !== EOF) { | |
var a = []; | |
while ((t !== EOL) && (t !== EOF)) { | |
a.push(t); | |
t = token(); | |
} | |
if (f && !(a = f(a, n++))) continue; | |
rows.push(a); | |
} | |
return rows; | |
}; | |
d3.csv.format = function(rows) { | |
return rows.map(d3_csv_formatRow).join("\n"); | |
}; | |
function d3_csv_formatRow(row) { | |
return row.map(d3_csv_formatValue).join(","); | |
} | |
function d3_csv_formatValue(text) { | |
return /[",\n]/.test(text) | |
? "\"" + text.replace(/\"/g, "\"\"") + "\"" | |
: text; | |
} | |
d3.geo = {}; | |
var d3_geo_radians = Math.PI / 180; | |
// TODO clip input coordinates on opposite hemisphere | |
d3.geo.azimuthal = function() { | |
var mode = "orthographic", // or stereographic, gnomonic, equidistant or equalarea | |
origin, | |
scale = 200, | |
translate = [480, 250], | |
x0, | |
y0, | |
cy0, | |
sy0; | |
function azimuthal(coordinates) { | |
var x1 = coordinates[0] * d3_geo_radians - x0, | |
y1 = coordinates[1] * d3_geo_radians, | |
cx1 = Math.cos(x1), | |
sx1 = Math.sin(x1), | |
cy1 = Math.cos(y1), | |
sy1 = Math.sin(y1), | |
cc = mode !== "orthographic" ? sy0 * sy1 + cy0 * cy1 * cx1 : null, | |
c, | |
k = mode === "stereographic" ? 1 / (1 + cc) | |
: mode === "gnomonic" ? 1 / cc | |
: mode === "equidistant" ? (c = Math.acos(cc), c ? c / Math.sin(c) : 0) | |
: mode === "equalarea" ? Math.sqrt(2 / (1 + cc)) | |
: 1, | |
x = k * cy1 * sx1, | |
y = k * (sy0 * cy1 * cx1 - cy0 * sy1); | |
return [ | |
scale * x + translate[0], | |
scale * y + translate[1] | |
]; | |
} | |
azimuthal.invert = function(coordinates) { | |
var x = (coordinates[0] - translate[0]) / scale, | |
y = (coordinates[1] - translate[1]) / scale, | |
p = Math.sqrt(x * x + y * y), | |
c = mode === "stereographic" ? 2 * Math.atan(p) | |
: mode === "gnomonic" ? Math.atan(p) | |
: mode === "equidistant" ? p | |
: mode === "equalarea" ? 2 * Math.asin(.5 * p) | |
: Math.asin(p), | |
sc = Math.sin(c), | |
cc = Math.cos(c); | |
return [ | |
(x0 + Math.atan2(x * sc, p * cy0 * cc + y * sy0 * sc)) / d3_geo_radians, | |
Math.asin(cc * sy0 - (p ? (y * sc * cy0) / p : 0)) / d3_geo_radians | |
]; | |
}; | |
azimuthal.mode = function(x) { | |
if (!arguments.length) return mode; | |
mode = x + ""; | |
return azimuthal; | |
}; | |
azimuthal.origin = function(x) { | |
if (!arguments.length) return origin; | |
origin = x; | |
x0 = origin[0] * d3_geo_radians; | |
y0 = origin[1] * d3_geo_radians; | |
cy0 = Math.cos(y0); | |
sy0 = Math.sin(y0); | |
return azimuthal; | |
}; | |
azimuthal.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return azimuthal; | |
}; | |
azimuthal.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = [+x[0], +x[1]]; | |
return azimuthal; | |
}; | |
return azimuthal.origin([0, 0]); | |
}; | |
// Derived from Tom Carden's Albers implementation for Protovis. | |
// http://gist.github.com/476238 | |
// http://mathworld.wolfram.com/AlbersEqual-AreaConicProjection.html | |
d3.geo.albers = function() { | |
var origin = [-98, 38], | |
parallels = [29.5, 45.5], | |
scale = 1000, | |
translate = [480, 250], | |
lng0, // d3_geo_radians * origin[0] | |
n, | |
C, | |
p0; | |
function albers(coordinates) { | |
var t = n * (d3_geo_radians * coordinates[0] - lng0), | |
p = Math.sqrt(C - 2 * n * Math.sin(d3_geo_radians * coordinates[1])) / n; | |
return [ | |
scale * p * Math.sin(t) + translate[0], | |
scale * (p * Math.cos(t) - p0) + translate[1] | |
]; | |
} | |
albers.invert = function(coordinates) { | |
var x = (coordinates[0] - translate[0]) / scale, | |
y = (coordinates[1] - translate[1]) / scale, | |
p0y = p0 + y, | |
t = Math.atan2(x, p0y), | |
p = Math.sqrt(x * x + p0y * p0y); | |
return [ | |
(lng0 + t / n) / d3_geo_radians, | |
Math.asin((C - p * p * n * n) / (2 * n)) / d3_geo_radians | |
]; | |
}; | |
function reload() { | |
var phi1 = d3_geo_radians * parallels[0], | |
phi2 = d3_geo_radians * parallels[1], | |
lat0 = d3_geo_radians * origin[1], | |
s = Math.sin(phi1), | |
c = Math.cos(phi1); | |
lng0 = d3_geo_radians * origin[0]; | |
n = .5 * (s + Math.sin(phi2)); | |
C = c * c + 2 * n * s; | |
p0 = Math.sqrt(C - 2 * n * Math.sin(lat0)) / n; | |
return albers; | |
} | |
albers.origin = function(x) { | |
if (!arguments.length) return origin; | |
origin = [+x[0], +x[1]]; | |
return reload(); | |
}; | |
albers.parallels = function(x) { | |
if (!arguments.length) return parallels; | |
parallels = [+x[0], +x[1]]; | |
return reload(); | |
}; | |
albers.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return albers; | |
}; | |
albers.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = [+x[0], +x[1]]; | |
return albers; | |
}; | |
return reload(); | |
}; | |
// A composite projection for the United States, 960x500. The set of standard | |
// parallels for each region comes from USGS, which is published here: | |
// http://egsc.usgs.gov/isb/pubs/MapProjections/projections.html#albers | |
// TODO allow the composite projection to be rescaled? | |
d3.geo.albersUsa = function() { | |
var lower48 = d3.geo.albers(); | |
var alaska = d3.geo.albers() | |
.origin([-160, 60]) | |
.parallels([55, 65]); | |
var hawaii = d3.geo.albers() | |
.origin([-160, 20]) | |
.parallels([8, 18]); | |
var puertoRico = d3.geo.albers() | |
.origin([-60, 10]) | |
.parallels([8, 18]); | |
function albersUsa(coordinates) { | |
var lon = coordinates[0], | |
lat = coordinates[1]; | |
return (lat > 50 ? alaska | |
: lon < -140 ? hawaii | |
: lat < 21 ? puertoRico | |
: lower48)(coordinates); | |
} | |
albersUsa.scale = function(x) { | |
if (!arguments.length) return lower48.scale(); | |
lower48.scale(x); | |
alaska.scale(x * .6); | |
hawaii.scale(x); | |
puertoRico.scale(x * 1.5); | |
return albersUsa.translate(lower48.translate()); | |
}; | |
albersUsa.translate = function(x) { | |
if (!arguments.length) return lower48.translate(); | |
var dz = lower48.scale() / 1000, | |
dx = x[0], | |
dy = x[1]; | |
lower48.translate(x); | |
alaska.translate([dx - 400 * dz, dy + 170 * dz]); | |
hawaii.translate([dx - 190 * dz, dy + 200 * dz]); | |
puertoRico.translate([dx + 580 * dz, dy + 430 * dz]); | |
return albersUsa; | |
}; | |
return albersUsa.scale(lower48.scale()); | |
}; | |
d3.geo.bonne = function() { | |
var scale = 200, | |
translate = [480, 250], | |
x0, // origin longitude in radians | |
y0, // origin latitude in radians | |
y1, // parallel latitude in radians | |
c1; // cot(y1) | |
function bonne(coordinates) { | |
var x = coordinates[0] * d3_geo_radians - x0, | |
y = coordinates[1] * d3_geo_radians - y0; | |
if (y1) { | |
var p = c1 + y1 - y, E = x * Math.cos(y) / p; | |
x = p * Math.sin(E); | |
y = p * Math.cos(E) - c1; | |
} else { | |
x *= Math.cos(y); | |
y *= -1; | |
} | |
return [ | |
scale * x + translate[0], | |
scale * y + translate[1] | |
]; | |
} | |
bonne.invert = function(coordinates) { | |
var x = (coordinates[0] - translate[0]) / scale, | |
y = (coordinates[1] - translate[1]) / scale; | |
if (y1) { | |
var c = c1 + y, p = Math.sqrt(x * x + c * c); | |
y = c1 + y1 - p; | |
x = x0 + p * Math.atan2(x, c) / Math.cos(y); | |
} else { | |
y *= -1; | |
x /= Math.cos(y); | |
} | |
return [ | |
x / d3_geo_radians, | |
y / d3_geo_radians | |
]; | |
}; | |
// 90° for Werner, 0° for Sinusoidal | |
bonne.parallel = function(x) { | |
if (!arguments.length) return y1 / d3_geo_radians; | |
c1 = 1 / Math.tan(y1 = x * d3_geo_radians); | |
return bonne; | |
}; | |
bonne.origin = function(x) { | |
if (!arguments.length) return [x0 / d3_geo_radians, y0 / d3_geo_radians]; | |
x0 = x[0] * d3_geo_radians; | |
y0 = x[1] * d3_geo_radians; | |
return bonne; | |
}; | |
bonne.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return bonne; | |
}; | |
bonne.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = [+x[0], +x[1]]; | |
return bonne; | |
}; | |
return bonne.origin([0, 0]).parallel(45); | |
}; | |
d3.geo.equirectangular = function() { | |
var scale = 500, | |
translate = [480, 250]; | |
function equirectangular(coordinates) { | |
var x = coordinates[0] / 360, | |
y = -coordinates[1] / 360; | |
return [ | |
scale * x + translate[0], | |
scale * y + translate[1] | |
]; | |
} | |
equirectangular.invert = function(coordinates) { | |
var x = (coordinates[0] - translate[0]) / scale, | |
y = (coordinates[1] - translate[1]) / scale; | |
return [ | |
360 * x, | |
-360 * y | |
]; | |
}; | |
equirectangular.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return equirectangular; | |
}; | |
equirectangular.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = [+x[0], +x[1]]; | |
return equirectangular; | |
}; | |
return equirectangular; | |
}; | |
d3.geo.mercator = function() { | |
var scale = 500, | |
translate = [480, 250]; | |
function mercator(coordinates) { | |
var x = coordinates[0] / 360, | |
y = -(Math.log(Math.tan(Math.PI / 4 + coordinates[1] * d3_geo_radians / 2)) / d3_geo_radians) / 360; | |
return [ | |
scale * x + translate[0], | |
scale * Math.max(-.5, Math.min(.5, y)) + translate[1] | |
]; | |
} | |
mercator.invert = function(coordinates) { | |
var x = (coordinates[0] - translate[0]) / scale, | |
y = (coordinates[1] - translate[1]) / scale; | |
return [ | |
360 * x, | |
2 * Math.atan(Math.exp(-360 * y * d3_geo_radians)) / d3_geo_radians - 90 | |
]; | |
}; | |
mercator.scale = function(x) { | |
if (!arguments.length) return scale; | |
scale = +x; | |
return mercator; | |
}; | |
mercator.translate = function(x) { | |
if (!arguments.length) return translate; | |
translate = [+x[0], +x[1]]; | |
return mercator; | |
}; | |
return mercator; | |
}; | |
function d3_geo_type(types, defaultValue) { | |
return function(object) { | |
return object && types.hasOwnProperty(object.type) ? types[object.type](object) : defaultValue; | |
}; | |
} | |
/** | |
* Returns a function that, given a GeoJSON object (e.g., a feature), returns | |
* the corresponding SVG path. The function can be customized by overriding the | |
* projection. Point features are mapped to circles with a default radius of | |
* 4.5px; the radius can be specified either as a constant or a function that | |
* is evaluated per object. | |
*/ | |
d3.geo.path = function() { | |
var pointRadius = 4.5, | |
pointCircle = d3_path_circle(pointRadius), | |
projection = d3.geo.albersUsa(); | |
function path(d, i) { | |
if (typeof pointRadius === "function") { | |
pointCircle = d3_path_circle(pointRadius.apply(this, arguments)); | |
} | |
return pathType(d) || null; | |
} | |
function project(coordinates) { | |
return projection(coordinates).join(","); | |
} | |
var pathType = d3_geo_type({ | |
FeatureCollection: function(o) { | |
var path = [], | |
features = o.features, | |
i = -1, // features.index | |
n = features.length; | |
while (++i < n) path.push(pathType(features[i].geometry)); | |
return path.join(""); | |
}, | |
Feature: function(o) { | |
return pathType(o.geometry); | |
}, | |
Point: function(o) { | |
return "M" + project(o.coordinates) + pointCircle; | |
}, | |
MultiPoint: function(o) { | |
var path = [], | |
coordinates = o.coordinates, | |
i = -1, // coordinates.index | |
n = coordinates.length; | |
while (++i < n) path.push("M", project(coordinates[i]), pointCircle); | |
return path.join(""); | |
}, | |
LineString: function(o) { | |
var path = ["M"], | |
coordinates = o.coordinates, | |
i = -1, // coordinates.index | |
n = coordinates.length; | |
while (++i < n) path.push(project(coordinates[i]), "L"); | |
path.pop(); | |
return path.join(""); | |
}, | |
MultiLineString: function(o) { | |
var path = [], | |
coordinates = o.coordinates, | |
i = -1, // coordinates.index | |
n = coordinates.length, | |
subcoordinates, // coordinates[i] | |
j, // subcoordinates.index | |
m; // subcoordinates.length | |
while (++i < n) { | |
subcoordinates = coordinates[i]; | |
j = -1; | |
m = subcoordinates.length; | |
path.push("M"); | |
while (++j < m) path.push(project(subcoordinates[j]), "L"); | |
path.pop(); | |
} | |
return path.join(""); | |
}, | |
Polygon: function(o) { | |
var path = [], | |
coordinates = o.coordinates, | |
i = -1, // coordinates.index | |
n = coordinates.length, | |
subcoordinates, // coordinates[i] | |
j, // subcoordinates.index | |
m; // subcoordinates.length | |
while (++i < n) { | |
subcoordinates = coordinates[i]; | |
j = -1; | |
if ((m = subcoordinates.length - 1) > 0) { | |
path.push("M"); | |
while (++j < m) path.push(project(subcoordinates[j]), "L"); | |
path[path.length - 1] = "Z"; | |
} | |
} | |
return path.join(""); | |
}, | |
MultiPolygon: function(o) { | |
var path = [], | |
coordinates = o.coordinates, | |
i = -1, // coordinates index | |
n = coordinates.length, | |
subcoordinates, // coordinates[i] | |
j, // subcoordinates index | |
m, // subcoordinates.length | |
subsubcoordinates, // subcoordinates[j] | |
k, // subsubcoordinates index | |
p; // subsubcoordinates.length | |
while (++i < n) { | |
subcoordinates = coordinates[i]; | |
j = -1; | |
m = subcoordinates.length; | |
while (++j < m) { | |
subsubcoordinates = subcoordinates[j]; | |
k = -1; | |
if ((p = subsubcoordinates.length - 1) > 0) { | |
path.push("M"); | |
while (++k < p) path.push(project(subsubcoordinates[k]), "L"); | |
path[path.length - 1] = "Z"; | |
} | |
} | |
} | |
return path.join(""); | |
}, | |
GeometryCollection: function(o) { | |
var path = [], | |
geometries = o.geometries, | |
i = -1, // geometries index | |
n = geometries.length; | |
while (++i < n) path.push(pathType(geometries[i])); | |
return path.join(""); | |
} | |
}); | |
var areaType = path.area = d3_geo_type({ | |
FeatureCollection: function(o) { | |
var area = 0, | |
features = o.features, | |
i = -1, // features.index | |
n = features.length; | |
while (++i < n) area += areaType(features[i]); | |
return area; | |
}, | |
Feature: function(o) { | |
return areaType(o.geometry); | |
}, | |
Polygon: function(o) { | |
return polygonArea(o.coordinates); | |
}, | |
MultiPolygon: function(o) { | |
var sum = 0, | |
coordinates = o.coordinates, | |
i = -1, // coordinates index | |
n = coordinates.length; | |
while (++i < n) sum += polygonArea(coordinates[i]); | |
return sum; | |
}, | |
GeometryCollection: function(o) { | |
var sum = 0, | |
geometries = o.geometries, | |
i = -1, // geometries index | |
n = geometries.length; | |
while (++i < n) sum += areaType(geometries[i]); | |
return sum; | |
} | |
}, 0); | |
function polygonArea(coordinates) { | |
var sum = area(coordinates[0]), // exterior ring | |
i = 0, // coordinates.index | |
n = coordinates.length; | |
while (++i < n) sum -= area(coordinates[i]); // holes | |
return sum; | |
} | |
function polygonCentroid(coordinates) { | |
var polygon = d3.geom.polygon(coordinates[0].map(projection)), // exterior ring | |
area = polygon.area(), | |
centroid = polygon.centroid(area < 0 ? (area *= -1, 1) : -1), | |
x = centroid[0], | |
y = centroid[1], | |
z = area, | |
i = 0, // coordinates index | |
n = coordinates.length; | |
while (++i < n) { | |
polygon = d3.geom.polygon(coordinates[i].map(projection)); // holes | |
area = polygon.area(); | |
centroid = polygon.centroid(area < 0 ? (area *= -1, 1) : -1); | |
x -= centroid[0]; | |
y -= centroid[1]; | |
z -= area; | |
} | |
return [x, y, 6 * z]; // weighted centroid | |
} | |
var centroidType = path.centroid = d3_geo_type({ | |
// TODO FeatureCollection | |
// TODO Point | |
// TODO MultiPoint | |
// TODO LineString | |
// TODO MultiLineString | |
// TODO GeometryCollection | |
Feature: function(o) { | |
return centroidType(o.geometry); | |
}, | |
Polygon: function(o) { | |
var centroid = polygonCentroid(o.coordinates); | |
return [centroid[0] / centroid[2], centroid[1] / centroid[2]]; | |
}, | |
MultiPolygon: function(o) { | |
var area = 0, | |
coordinates = o.coordinates, | |
centroid, | |
x = 0, | |
y = 0, | |
z = 0, | |
i = -1, // coordinates index | |
n = coordinates.length; | |
while (++i < n) { | |
centroid = polygonCentroid(coordinates[i]); | |
x += centroid[0]; | |
y += centroid[1]; | |
z += centroid[2]; | |
} | |
return [x / z, y / z]; | |
} | |
}); | |
function area(coordinates) { | |
return Math.abs(d3.geom.polygon(coordinates.map(projection)).area()); | |
} | |
path.projection = function(x) { | |
projection = x; | |
return path; | |
}; | |
path.pointRadius = function(x) { | |
if (typeof x === "function") pointRadius = x; | |
else { | |
pointRadius = +x; | |
pointCircle = d3_path_circle(pointRadius); | |
} | |
return path; | |
}; | |
return path; | |
}; | |
function d3_path_circle(radius) { | |
return "m0," + radius | |
+ "a" + radius + "," + radius + " 0 1,1 0," + (-2 * radius) | |
+ "a" + radius + "," + radius + " 0 1,1 0," + (+2 * radius) | |
+ "z"; | |
} | |
/** | |
* Given a GeoJSON object, returns the corresponding bounding box. The bounding | |
* box is represented by a two-dimensional array: [[left, bottom], [right, | |
* top]], where left is the minimum longitude, bottom is the minimum latitude, | |
* right is maximum longitude, and top is the maximum latitude. | |
*/ | |
d3.geo.bounds = function(feature) { | |
var left = Infinity, | |
bottom = Infinity, | |
right = -Infinity, | |
top = -Infinity; | |
d3_geo_bounds(feature, function(x, y) { | |
if (x < left) left = x; | |
if (x > right) right = x; | |
if (y < bottom) bottom = y; | |
if (y > top) top = y; | |
}); | |
return [[left, bottom], [right, top]]; | |
}; | |
function d3_geo_bounds(o, f) { | |
if (d3_geo_boundsTypes.hasOwnProperty(o.type)) d3_geo_boundsTypes[o.type](o, f); | |
} | |
var d3_geo_boundsTypes = { | |
Feature: d3_geo_boundsFeature, | |
FeatureCollection: d3_geo_boundsFeatureCollection, | |
GeometryCollection: d3_geo_boundsGeometryCollection, | |
LineString: d3_geo_boundsLineString, | |
MultiLineString: d3_geo_boundsMultiLineString, | |
MultiPoint: d3_geo_boundsLineString, | |
MultiPolygon: d3_geo_boundsMultiPolygon, | |
Point: d3_geo_boundsPoint, | |
Polygon: d3_geo_boundsPolygon | |
}; | |
function d3_geo_boundsFeature(o, f) { | |
d3_geo_bounds(o.geometry, f); | |
} | |
function d3_geo_boundsFeatureCollection(o, f) { | |
for (var a = o.features, i = 0, n = a.length; i < n; i++) { | |
d3_geo_bounds(a[i].geometry, f); | |
} | |
} | |
function d3_geo_boundsGeometryCollection(o, f) { | |
for (var a = o.geometries, i = 0, n = a.length; i < n; i++) { | |
d3_geo_bounds(a[i], f); | |
} | |
} | |
function d3_geo_boundsLineString(o, f) { | |
for (var a = o.coordinates, i = 0, n = a.length; i < n; i++) { | |
f.apply(null, a[i]); | |
} | |
} | |
function d3_geo_boundsMultiLineString(o, f) { | |
for (var a = o.coordinates, i = 0, n = a.length; i < n; i++) { | |
for (var b = a[i], j = 0, m = b.length; j < m; j++) { | |
f.apply(null, b[j]); | |
} | |
} | |
} | |
function d3_geo_boundsMultiPolygon(o, f) { | |
for (var a = o.coordinates, i = 0, n = a.length; i < n; i++) { | |
for (var b = a[i][0], j = 0, m = b.length; j < m; j++) { | |
f.apply(null, b[j]); | |
} | |
} | |
} | |
function d3_geo_boundsPoint(o, f) { | |
f.apply(null, o.coordinates); | |
} | |
function d3_geo_boundsPolygon(o, f) { | |
for (var a = o.coordinates[0], i = 0, n = a.length; i < n; i++) { | |
f.apply(null, a[i]); | |
} | |
} | |
// TODO breakAtDateLine? | |
d3.geo.circle = function() { | |
var origin = [0, 0], | |
degrees = 90 - 1e-2, | |
radians = degrees * d3_geo_radians, | |
arc = d3.geo.greatArc().target(d3_identity); | |
function circle() { | |
// TODO render a circle as a Polygon | |
} | |
function visible(point) { | |
return arc.distance(point) < radians; | |
} | |
circle.clip = function(d) { | |
arc.source(typeof origin === "function" ? origin.apply(this, arguments) : origin); | |
return clipType(d); | |
}; | |
var clipType = d3_geo_type({ | |
FeatureCollection: function(o) { | |
var features = o.features.map(clipType).filter(d3_identity); | |
return features && (o = Object.create(o), o.features = features, o); | |
}, | |
Feature: function(o) { | |
var geometry = clipType(o.geometry); | |
return geometry && (o = Object.create(o), o.geometry = geometry, o); | |
}, | |
Point: function(o) { | |
return visible(o.coordinates) && o; | |
}, | |
MultiPoint: function(o) { | |
var coordinates = o.coordinates.filter(visible); | |
return coordinates.length && { | |
type: o.type, | |
coordinates: coordinates | |
}; | |
}, | |
LineString: function(o) { | |
var coordinates = clip(o.coordinates); | |
return coordinates.length && (o = Object.create(o), o.coordinates = coordinates, o); | |
}, | |
MultiLineString: function(o) { | |
var coordinates = o.coordinates.map(clip).filter(function(d) { return d.length; }); | |
return coordinates.length && (o = Object.create(o), o.coordinates = coordinates, o); | |
}, | |
Polygon: function(o) { | |
var coordinates = o.coordinates.map(clip); | |
return coordinates[0].length && (o = Object.create(o), o.coordinates = coordinates, o); | |
}, | |
MultiPolygon: function(o) { | |
var coordinates = o.coordinates.map(function(d) { return d.map(clip); }).filter(function(d) { return d[0].length; }); | |
return coordinates.length && (o = Object.create(o), o.coordinates = coordinates, o); | |
}, | |
GeometryCollection: function(o) { | |
var geometries = o.geometries.map(clipType).filter(d3_identity); | |
return geometries.length && (o = Object.create(o), o.geometries = geometries, o); | |
} | |
}); | |
function clip(coordinates) { | |
var i = -1, | |
n = coordinates.length, | |
clipped = [], | |
p0, | |
p1, | |
p2, | |
d0, | |
d1; | |
while (++i < n) { | |
d1 = arc.distance(p2 = coordinates[i]); | |
if (d1 < radians) { | |
if (p1) clipped.push(d3_geo_greatArcInterpolate(p1, p2)((d0 - radians) / (d0 - d1))); | |
clipped.push(p2); | |
p0 = p1 = null; | |
} else { | |
p1 = p2; | |
if (!p0 && clipped.length) { | |
clipped.push(d3_geo_greatArcInterpolate(clipped[clipped.length - 1], p1)((radians - d0) / (d1 - d0))); | |
p0 = p1; | |
} | |
} | |
d0 = d1; | |
} | |
if (p1 && clipped.length) { | |
d1 = arc.distance(p2 = clipped[0]); | |
clipped.push(d3_geo_greatArcInterpolate(p1, p2)((d0 - radians) / (d0 - d1))); | |
} | |
return resample(clipped); | |
} | |
// Resample coordinates, creating great arcs between each. | |
function resample(coordinates) { | |
var i = 0, | |
n = coordinates.length, | |
j, | |
m, | |
resampled = n ? [coordinates[0]] : coordinates, | |
resamples, | |
origin = arc.source(); | |
while (++i < n) { | |
resamples = arc.source(coordinates[i - 1])(coordinates[i]).coordinates; | |
for (j = 0, m = resamples.length; ++j < m;) resampled.push(resamples[j]); | |
} | |
arc.source(origin); | |
return resampled; | |
} | |
circle.origin = function(x) { | |
if (!arguments.length) return origin; | |
origin = x; | |
return circle; | |
}; | |
circle.angle = function(x) { | |
if (!arguments.length) return degrees; | |
radians = (degrees = +x) * d3_geo_radians; | |
return circle; | |
}; | |
// Precision is specified in degrees. | |
circle.precision = function(x) { | |
if (!arguments.length) return arc.precision(); | |
arc.precision(x); | |
return circle; | |
}; | |
return circle; | |
} | |
d3.geo.greatArc = function() { | |
var source = d3_geo_greatArcSource, | |
target = d3_geo_greatArcTarget, | |
precision = 6 * d3_geo_radians; | |
function greatArc() { | |
var a = typeof source === "function" ? source.apply(this, arguments) : source, | |
b = typeof target === "function" ? target.apply(this, arguments) : target, | |
i = d3_geo_greatArcInterpolate(a, b), | |
dt = precision / i.d, | |
t = 0, | |
coordinates = [a]; | |
while ((t += dt) < 1) coordinates.push(i(t)); | |
coordinates.push(b); | |
return { | |
type: "LineString", | |
coordinates: coordinates | |
}; | |
} | |
// Length returned in radians; multiply by radius for distance. | |
greatArc.distance = function() { | |
var a = typeof source === "function" ? source.apply(this, arguments) : source, | |
b = typeof target === "function" ? target.apply(this, arguments) : target; | |
return d3_geo_greatArcInterpolate(a, b).d; | |
}; | |
greatArc.source = function(x) { | |
if (!arguments.length) return source; | |
source = x; | |
return greatArc; | |
}; | |
greatArc.target = function(x) { | |
if (!arguments.length) return target; | |
target = x; | |
return greatArc; | |
}; | |
// Precision is specified in degrees. | |
greatArc.precision = function(x) { | |
if (!arguments.length) return precision / d3_geo_radians; | |
precision = x * d3_geo_radians; | |
return greatArc; | |
}; | |
return greatArc; | |
}; | |
function d3_geo_greatArcSource(d) { | |
return d.source; | |
} | |
function d3_geo_greatArcTarget(d) { | |
return d.target; | |
} | |
function d3_geo_greatArcInterpolate(a, b) { | |
var x0 = a[0] * d3_geo_radians, cx0 = Math.cos(x0), sx0 = Math.sin(x0), | |
y0 = a[1] * d3_geo_radians, cy0 = Math.cos(y0), sy0 = Math.sin(y0), | |
x1 = b[0] * d3_geo_radians, cx1 = Math.cos(x1), sx1 = Math.sin(x1), | |
y1 = b[1] * d3_geo_radians, cy1 = Math.cos(y1), sy1 = Math.sin(y1), | |
d = interpolate.d = Math.acos(Math.max(-1, Math.min(1, sy0 * sy1 + cy0 * cy1 * Math.cos(x1 - x0)))), | |
sd = Math.sin(d); | |
// From http://williams.best.vwh.net/avform.htm#Intermediate | |
function interpolate(t) { | |
var A = Math.sin(d - (t *= d)) / sd, | |
B = Math.sin(t) / sd, | |
x = A * cy0 * cx0 + B * cy1 * cx1, | |
y = A * cy0 * sx0 + B * cy1 * sx1, | |
z = A * sy0 + B * sy1; | |
return [ | |
Math.atan2(y, x) / d3_geo_radians, | |
Math.atan2(z, Math.sqrt(x * x + y * y)) / d3_geo_radians | |
]; | |
} | |
return interpolate; | |
} | |
d3.geo.greatCircle = d3.geo.circle; | |
d3.geom = {}; | |
/** | |
* Computes a contour for a given input grid function using the <a | |
* href="http://en.wikipedia.org/wiki/Marching_squares">marching | |
* squares</a> algorithm. Returns the contour polygon as an array of points. | |
* | |
* @param grid a two-input function(x, y) that returns true for values | |
* inside the contour and false for values outside the contour. | |
* @param start an optional starting point [x, y] on the grid. | |
* @returns polygon [[x1, y1], [x2, y2], …] | |
*/ | |
d3.geom.contour = function(grid, start) { | |
var s = start || d3_geom_contourStart(grid), // starting point | |
c = [], // contour polygon | |
x = s[0], // current x position | |
y = s[1], // current y position | |
dx = 0, // next x direction | |
dy = 0, // next y direction | |
pdx = NaN, // previous x direction | |
pdy = NaN, // previous y direction | |
i = 0; | |
do { | |
// determine marching squares index | |
i = 0; | |
if (grid(x-1, y-1)) i += 1; | |
if (grid(x, y-1)) i += 2; | |
if (grid(x-1, y )) i += 4; | |
if (grid(x, y )) i += 8; | |
// determine next direction | |
if (i === 6) { | |
dx = pdy === -1 ? -1 : 1; | |
dy = 0; | |
} else if (i === 9) { | |
dx = 0; | |
dy = pdx === 1 ? -1 : 1; | |
} else { | |
dx = d3_geom_contourDx[i]; | |
dy = d3_geom_contourDy[i]; | |
} | |
// update contour polygon | |
if (dx != pdx && dy != pdy) { | |
c.push([x, y]); | |
pdx = dx; | |
pdy = dy; | |
} | |
x += dx; | |
y += dy; | |
} while (s[0] != x || s[1] != y); | |
return c; | |
}; | |
// lookup tables for marching directions | |
var d3_geom_contourDx = [1, 0, 1, 1,-1, 0,-1, 1,0, 0,0,0,-1, 0,-1,NaN], | |
d3_geom_contourDy = [0,-1, 0, 0, 0,-1, 0, 0,1,-1,1,1, 0,-1, 0,NaN]; | |
function d3_geom_contourStart(grid) { | |
var x = 0, | |
y = 0; | |
// search for a starting point; begin at origin | |
// and proceed along outward-expanding diagonals | |
while (true) { | |
if (grid(x,y)) { | |
return [x,y]; | |
} | |
if (x === 0) { | |
x = y + 1; | |
y = 0; | |
} else { | |
x = x - 1; | |
y = y + 1; | |
} | |
} | |
} | |
/** | |
* Computes the 2D convex hull of a set of points using Graham's scanning | |
* algorithm. The algorithm has been implemented as described in Cormen, | |
* Leiserson, and Rivest's Introduction to Algorithms. The running time of | |
* this algorithm is O(n log n), where n is the number of input points. | |
* | |
* @param vertices [[x1, y1], [x2, y2], …] | |
* @returns polygon [[x1, y1], [x2, y2], …] | |
*/ | |
d3.geom.hull = function(vertices) { | |
if (vertices.length < 3) return []; | |
var len = vertices.length, | |
plen = len - 1, | |
points = [], | |
stack = [], | |
i, j, h = 0, x1, y1, x2, y2, u, v, a, sp; | |
// find the starting ref point: leftmost point with the minimum y coord | |
for (i=1; i<len; ++i) { | |
if (vertices[i][1] < vertices[h][1]) { | |
h = i; | |
} else if (vertices[i][1] == vertices[h][1]) { | |
h = (vertices[i][0] < vertices[h][0] ? i : h); | |
} | |
} | |
// calculate polar angles from ref point and sort | |
for (i=0; i<len; ++i) { | |
if (i === h) continue; | |
y1 = vertices[i][1] - vertices[h][1]; | |
x1 = vertices[i][0] - vertices[h][0]; | |
points.push({angle: Math.atan2(y1, x1), index: i}); | |
} | |
points.sort(function(a, b) { return a.angle - b.angle; }); | |
// toss out duplicate angles | |
a = points[0].angle; | |
v = points[0].index; | |
u = 0; | |
for (i=1; i<plen; ++i) { | |
j = points[i].index; | |
if (a == points[i].angle) { | |
// keep angle for point most distant from the reference | |
x1 = vertices[v][0] - vertices[h][0]; | |
y1 = vertices[v][1] - vertices[h][1]; | |
x2 = vertices[j][0] - vertices[h][0]; | |
y2 = vertices[j][1] - vertices[h][1]; | |
if ((x1*x1 + y1*y1) >= (x2*x2 + y2*y2)) { | |
points[i].index = -1; | |
} else { | |
points[u].index = -1; | |
a = points[i].angle; | |
u = i; | |
v = j; | |
} | |
} else { | |
a = points[i].angle; | |
u = i; | |
v = j; | |
} | |
} | |
// initialize the stack | |
stack.push(h); | |
for (i=0, j=0; i<2; ++j) { | |
if (points[j].index !== -1) { | |
stack.push(points[j].index); | |
i++; | |
} | |
} | |
sp = stack.length; | |
// do graham's scan | |
for (; j<plen; ++j) { | |
if (points[j].index === -1) continue; // skip tossed out points | |
while (!d3_geom_hullCCW(stack[sp-2], stack[sp-1], points[j].index, vertices)) { | |
--sp; | |
} | |
stack[sp++] = points[j].index; | |
} | |
// construct the hull | |
var poly = []; | |
for (i=0; i<sp; ++i) { | |
poly.push(vertices[stack[i]]); | |
} | |
return poly; | |
} | |
// are three points in counter-clockwise order? | |
function d3_geom_hullCCW(i1, i2, i3, v) { | |
var t, a, b, c, d, e, f; | |
t = v[i1]; a = t[0]; b = t[1]; | |
t = v[i2]; c = t[0]; d = t[1]; | |
t = v[i3]; e = t[0]; f = t[1]; | |
return ((f-b)*(c-a) - (d-b)*(e-a)) > 0; | |
} | |
// Note: requires coordinates to be counterclockwise and convex! | |
d3.geom.polygon = function(coordinates) { | |
coordinates.area = function() { | |
var i = 0, | |
n = coordinates.length, | |
a = coordinates[n - 1][0] * coordinates[0][1], | |
b = coordinates[n - 1][1] * coordinates[0][0]; | |
while (++i < n) { | |
a += coordinates[i - 1][0] * coordinates[i][1]; | |
b += coordinates[i - 1][1] * coordinates[i][0]; | |
} | |
return (b - a) * .5; | |
}; | |
coordinates.centroid = function(k) { | |
var i = -1, | |
n = coordinates.length, | |
x = 0, | |
y = 0, | |
a, | |
b = coordinates[n - 1], | |
c; | |
if (!arguments.length) k = -1 / (6 * coordinates.area()); | |
while (++i < n) { | |
a = b; | |
b = coordinates[i]; | |
c = a[0] * b[1] - b[0] * a[1]; | |
x += (a[0] + b[0]) * c; | |
y += (a[1] + b[1]) * c; | |
} | |
return [x * k, y * k]; | |
}; | |
// The Sutherland-Hodgman clipping algorithm. | |
coordinates.clip = function(subject) { | |
var input, | |
i = -1, | |
n = coordinates.length, | |
j, | |
m, | |
a = coordinates[n - 1], | |
b, | |
c, | |
d; | |
while (++i < n) { | |
input = subject.slice(); | |
subject.length = 0; | |
b = coordinates[i]; | |
c = input[(m = input.length) - 1]; | |
j = -1; | |
while (++j < m) { | |
d = input[j]; | |
if (d3_geom_polygonInside(d, a, b)) { | |
if (!d3_geom_polygonInside(c, a, b)) { | |
subject.push(d3_geom_polygonIntersect(c, d, a, b)); | |
} | |
subject.push(d); | |
} else if (d3_geom_polygonInside(c, a, b)) { | |
subject.push(d3_geom_polygonIntersect(c, d, a, b)); | |
} | |
c = d; | |
} | |
a = b; | |
} | |
return subject; | |
}; | |
return coordinates; | |
}; | |
function d3_geom_polygonInside(p, a, b) { | |
return (b[0] - a[0]) * (p[1] - a[1]) < (b[1] - a[1]) * (p[0] - a[0]); | |
} | |
// Intersect two infinite lines cd and ab. | |
function d3_geom_polygonIntersect(c, d, a, b) { | |
var x1 = c[0], x2 = d[0], x3 = a[0], x4 = b[0], | |
y1 = c[1], y2 = d[1], y3 = a[1], y4 = b[1], | |
x13 = x1 - x3, | |
x21 = x2 - x1, | |
x43 = x4 - x3, | |
y13 = y1 - y3, | |
y21 = y2 - y1, | |
y43 = y4 - y3, | |
ua = (x43 * y13 - y43 * x13) / (y43 * x21 - x43 * y21); | |
return [x1 + ua * x21, y1 + ua * y21]; | |
} | |
// Adapted from Nicolas Garcia Belmonte's JIT implementation: | |
// http://blog.thejit.org/2010/02/12/voronoi-tessellation/ | |
// http://blog.thejit.org/assets/voronoijs/voronoi.js | |
// See lib/jit/LICENSE for details. | |
// Notes: | |
// | |
// This implementation does not clip the returned polygons, so if you want to | |
// clip them to a particular shape you will need to do that either in SVG or by | |
// post-processing with d3.geom.polygon's clip method. | |
// | |
// If any vertices are coincident or have NaN positions, the behavior of this | |
// method is undefined. Most likely invalid polygons will be returned. You | |
// should filter invalid points, and consolidate coincident points, before | |
// computing the tessellation. | |
/** | |
* @param vertices [[x1, y1], [x2, y2], …] | |
* @returns polygons [[[x1, y1], [x2, y2], …], …] | |
*/ | |
d3.geom.voronoi = function(vertices) { | |
var polygons = vertices.map(function() { return []; }); | |
d3_voronoi_tessellate(vertices, function(e) { | |
var s1, | |
s2, | |
x1, | |
x2, | |
y1, | |
y2; | |
if (e.a === 1 && e.b >= 0) { | |
s1 = e.ep.r; | |
s2 = e.ep.l; | |
} else { | |
s1 = e.ep.l; | |
s2 = e.ep.r; | |
} | |
if (e.a === 1) { | |
y1 = s1 ? s1.y : -1e6; | |
x1 = e.c - e.b * y1; | |
y2 = s2 ? s2.y : 1e6; | |
x2 = e.c - e.b * y2; | |
} else { | |
x1 = s1 ? s1.x : -1e6; | |
y1 = e.c - e.a * x1; | |
x2 = s2 ? s2.x : 1e6; | |
y2 = e.c - e.a * x2; | |
} | |
var v1 = [x1, y1], | |
v2 = [x2, y2]; | |
polygons[e.region.l.index].push(v1, v2); | |
polygons[e.region.r.index].push(v1, v2); | |
}); | |
// Reconnect the polygon segments into counterclockwise loops. | |
return polygons.map(function(polygon, i) { | |
var cx = vertices[i][0], | |
cy = vertices[i][1]; | |
polygon.forEach(function(v) { | |
v.angle = Math.atan2(v[0] - cx, v[1] - cy); | |
}); | |
return polygon.sort(function(a, b) { | |
return a.angle - b.angle; | |
}).filter(function(d, i) { | |
return !i || (d.angle - polygon[i - 1].angle > 1e-10); | |
}); | |
}); | |
}; | |
var d3_voronoi_opposite = {"l": "r", "r": "l"}; | |
function d3_voronoi_tessellate(vertices, callback) { | |
var Sites = { | |
list: vertices | |
.map(function(v, i) { | |
return { | |
index: i, | |
x: v[0], | |
y: v[1] | |
}; | |
}) | |
.sort(function(a, b) { | |
return a.y < b.y ? -1 | |
: a.y > b.y ? 1 | |
: a.x < b.x ? -1 | |
: a.x > b.x ? 1 | |
: 0; | |
}), | |
bottomSite: null | |
}; | |
var EdgeList = { | |
list: [], | |
leftEnd: null, | |
rightEnd: null, | |
init: function() { | |
EdgeList.leftEnd = EdgeList.createHalfEdge(null, "l"); | |
EdgeList.rightEnd = EdgeList.createHalfEdge(null, "l"); | |
EdgeList.leftEnd.r = EdgeList.rightEnd; | |
EdgeList.rightEnd.l = EdgeList.leftEnd; | |
EdgeList.list.unshift(EdgeList.leftEnd, EdgeList.rightEnd); | |
}, | |
createHalfEdge: function(edge, side) { | |
return { | |
edge: edge, | |
side: side, | |
vertex: null, | |
"l": null, | |
"r": null | |
}; | |
}, | |
insert: function(lb, he) { | |
he.l = lb; | |
he.r = lb.r; | |
lb.r.l = he; | |
lb.r = he; | |
}, | |
leftBound: function(p) { | |
var he = EdgeList.leftEnd; | |
do { | |
he = he.r; | |
} while (he != EdgeList.rightEnd && Geom.rightOf(he, p)); | |
he = he.l; | |
return he; | |
}, | |
del: function(he) { | |
he.l.r = he.r; | |
he.r.l = he.l; | |
he.edge = null; | |
}, | |
right: function(he) { | |
return he.r; | |
}, | |
left: function(he) { | |
return he.l; | |
}, | |
leftRegion: function(he) { | |
return he.edge == null | |
? Sites.bottomSite | |
: he.edge.region[he.side]; | |
}, | |
rightRegion: function(he) { | |
return he.edge == null | |
? Sites.bottomSite | |
: he.edge.region[d3_voronoi_opposite[he.side]]; | |
} | |
}; | |
var Geom = { | |
bisect: function(s1, s2) { | |
var newEdge = { | |
region: {"l": s1, "r": s2}, | |
ep: {"l": null, "r": null} | |
}; | |
var dx = s2.x - s1.x, | |
dy = s2.y - s1.y, | |
adx = dx > 0 ? dx : -dx, | |
ady = dy > 0 ? dy : -dy; | |
newEdge.c = s1.x * dx + s1.y * dy | |
+ (dx * dx + dy * dy) * .5; | |
if (adx > ady) { | |
newEdge.a = 1; | |
newEdge.b = dy / dx; | |
newEdge.c /= dx; | |
} else { | |
newEdge.b = 1; | |
newEdge.a = dx / dy; | |
newEdge.c /= dy; | |
} | |
return newEdge; | |
}, | |
intersect: function(el1, el2) { | |
var e1 = el1.edge, | |
e2 = el2.edge; | |
if (!e1 || !e2 || (e1.region.r == e2.region.r)) { | |
return null; | |
} | |
var d = (e1.a * e2.b) - (e1.b * e2.a); | |
if (Math.abs(d) < 1e-10) { | |
return null; | |
} | |
var xint = (e1.c * e2.b - e2.c * e1.b) / d, | |
yint = (e2.c * e1.a - e1.c * e2.a) / d, | |
e1r = e1.region.r, | |
e2r = e2.region.r, | |
el, | |
e; | |
if ((e1r.y < e2r.y) || | |
(e1r.y == e2r.y && e1r.x < e2r.x)) { | |
el = el1; | |
e = e1; | |
} else { | |
el = el2; | |
e = e2; | |
} | |
var rightOfSite = (xint >= e.region.r.x); | |
if ((rightOfSite && (el.side === "l")) || | |
(!rightOfSite && (el.side === "r"))) { | |
return null; | |
} | |
return { | |
x: xint, | |
y: yint | |
}; | |
}, | |
rightOf: function(he, p) { | |
var e = he.edge, | |
topsite = e.region.r, | |
rightOfSite = (p.x > topsite.x); | |
if (rightOfSite && (he.side === "l")) { | |
return 1; | |
} | |
if (!rightOfSite && (he.side === "r")) { | |
return 0; | |
} | |
if (e.a === 1) { | |
var dyp = p.y - topsite.y, | |
dxp = p.x - topsite.x, | |
fast = 0, | |
above = 0; | |
if ((!rightOfSite && (e.b < 0)) || | |
(rightOfSite && (e.b >= 0))) { | |
above = fast = (dyp >= e.b * dxp); | |
} else { | |
above = ((p.x + p.y * e.b) > e.c); | |
if (e.b < 0) { | |
above = !above; | |
} | |
if (!above) { | |
fast = 1; | |
} | |
} | |
if (!fast) { | |
var dxs = topsite.x - e.region.l.x; | |
above = (e.b * (dxp * dxp - dyp * dyp)) < | |
(dxs * dyp * (1 + 2 * dxp / dxs + e.b * e.b)); | |
if (e.b < 0) { | |
above = !above; | |
} | |
} | |
} else /* e.b == 1 */ { | |
var yl = e.c - e.a * p.x, | |
t1 = p.y - yl, | |
t2 = p.x - topsite.x, | |
t3 = yl - topsite.y; | |
above = (t1 * t1) > (t2 * t2 + t3 * t3); | |
} | |
return he.side === "l" ? above : !above; | |
}, | |
endPoint: function(edge, side, site) { | |
edge.ep[side] = site; | |
if (!edge.ep[d3_voronoi_opposite[side]]) return; | |
callback(edge); | |
}, | |
distance: function(s, t) { | |
var dx = s.x - t.x, | |
dy = s.y - t.y; | |
return Math.sqrt(dx * dx + dy * dy); | |
} | |
}; | |
var EventQueue = { | |
list: [], | |
insert: function(he, site, offset) { | |
he.vertex = site; | |
he.ystar = site.y + offset; | |
for (var i=0, list=EventQueue.list, l=list.length; i<l; i++) { | |
var next = list[i]; | |
if (he.ystar > next.ystar || | |
(he.ystar == next.ystar && | |
site.x > next.vertex.x)) { | |
continue; | |
} else { | |
break; | |
} | |
} | |
list.splice(i, 0, he); | |
}, | |
del: function(he) { | |
for (var i=0, ls=EventQueue.list, l=ls.length; i<l && (ls[i] != he); ++i) {} | |
ls.splice(i, 1); | |
}, | |
empty: function() { return EventQueue.list.length === 0; }, | |
nextEvent: function(he) { | |
for (var i=0, ls=EventQueue.list, l=ls.length; i<l; ++i) { | |
if (ls[i] == he) return ls[i+1]; | |
} | |
return null; | |
}, | |
min: function() { | |
var elem = EventQueue.list[0]; | |
return { | |
x: elem.vertex.x, | |
y: elem.ystar | |
}; | |
}, | |
extractMin: function() { | |
return EventQueue.list.shift(); | |
} | |
}; | |
EdgeList.init(); | |
Sites.bottomSite = Sites.list.shift(); | |
var newSite = Sites.list.shift(), newIntStar; | |
var lbnd, rbnd, llbnd, rrbnd, bisector; | |
var bot, top, temp, p, v; | |
var e, pm; | |
while (true) { | |
if (!EventQueue.empty()) { | |
newIntStar = EventQueue.min(); | |
} | |
if (newSite && (EventQueue.empty() | |
|| newSite.y < newIntStar.y | |
|| (newSite.y == newIntStar.y | |
&& newSite.x < newIntStar.x))) { //new site is smallest | |
lbnd = EdgeList.leftBound(newSite); | |
rbnd = EdgeList.right(lbnd); | |
bot = EdgeList.rightRegion(lbnd); | |
e = Geom.bisect(bot, newSite); | |
bisector = EdgeList.createHalfEdge(e, "l"); | |
EdgeList.insert(lbnd, bisector); | |
p = Geom.intersect(lbnd, bisector); | |
if (p) { | |
EventQueue.del(lbnd); | |
EventQueue.insert(lbnd, p, Geom.distance(p, newSite)); | |
} | |
lbnd = bisector; | |
bisector = EdgeList.createHalfEdge(e, "r"); | |
EdgeList.insert(lbnd, bisector); | |
p = Geom.intersect(bisector, rbnd); | |
if (p) { | |
EventQueue.insert(bisector, p, Geom.distance(p, newSite)); | |
} | |
newSite = Sites.list.shift(); | |
} else if (!EventQueue.empty()) { //intersection is smallest | |
lbnd = EventQueue.extractMin(); | |
llbnd = EdgeList.left(lbnd); | |
rbnd = EdgeList.right(lbnd); | |
rrbnd = EdgeList.right(rbnd); | |
bot = EdgeList.leftRegion(lbnd); | |
top = EdgeList.rightRegion(rbnd); | |
v = lbnd.vertex; | |
Geom.endPoint(lbnd.edge, lbnd.side, v); | |
Geom.endPoint(rbnd.edge, rbnd.side, v); | |
EdgeList.del(lbnd); | |
EventQueue.del(rbnd); | |
EdgeList.del(rbnd); | |
pm = "l"; | |
if (bot.y > top.y) { | |
temp = bot; | |
bot = top; | |
top = temp; | |
pm = "r"; | |
} | |
e = Geom.bisect(bot, top); | |
bisector = EdgeList.createHalfEdge(e, pm); | |
EdgeList.insert(llbnd, bisector); | |
Geom.endPoint(e, d3_voronoi_opposite[pm], v); | |
p = Geom.intersect(llbnd, bisector); | |
if (p) { | |
EventQueue.del(llbnd); | |
EventQueue.insert(llbnd, p, Geom.distance(p, bot)); | |
} | |
p = Geom.intersect(bisector, rrbnd); | |
if (p) { | |
EventQueue.insert(bisector, p, Geom.distance(p, bot)); | |
} | |
} else { | |
break; | |
} | |
}//end while | |
for (lbnd = EdgeList.right(EdgeList.leftEnd); | |
lbnd != EdgeList.rightEnd; | |
lbnd = EdgeList.right(lbnd)) { | |
callback(lbnd.edge); | |
} | |
} | |
/** | |
* @param vertices [[x1, y1], [x2, y2], …] | |
* @returns triangles [[[x1, y1], [x2, y2], [x3, y3]], …] | |
*/ | |
d3.geom.delaunay = function(vertices) { | |
var edges = vertices.map(function() { return []; }), | |
triangles = []; | |
// Use the Voronoi tessellation to determine Delaunay edges. | |
d3_voronoi_tessellate(vertices, function(e) { | |
edges[e.region.l.index].push(vertices[e.region.r.index]); | |
}); | |
// Reconnect the edges into counterclockwise triangles. | |
edges.forEach(function(edge, i) { | |
var v = vertices[i], | |
cx = v[0], | |
cy = v[1]; | |
edge.forEach(function(v) { | |
v.angle = Math.atan2(v[0] - cx, v[1] - cy); | |
}); | |
edge.sort(function(a, b) { | |
return a.angle - b.angle; | |
}); | |
for (var j = 0, m = edge.length - 1; j < m; j++) { | |
triangles.push([v, edge[j], edge[j + 1]]); | |
} | |
}); | |
return triangles; | |
}; | |
// Constructs a new quadtree for the specified array of points. A quadtree is a | |
// two-dimensional recursive spatial subdivision. This implementation uses | |
// square partitions, dividing each square into four equally-sized squares. Each | |
// point exists in a unique node; if multiple points are in the same position, | |
// some points may be stored on internal nodes rather than leaf nodes. Quadtrees | |
// can be used to accelerate various spatial operations, such as the Barnes-Hut | |
// approximation for computing n-body forces, or collision detection. | |
d3.geom.quadtree = function(points, x1, y1, x2, y2) { | |
var p, | |
i = -1, | |
n = points.length; | |
// Type conversion for deprecated API. | |
if (n && isNaN(points[0].x)) points = points.map(d3_geom_quadtreePoint); | |
// Allow bounds to be specified explicitly. | |
if (arguments.length < 5) { | |
if (arguments.length === 3) { | |
y2 = x2 = y1; | |
y1 = x1; | |
} else { | |
x1 = y1 = Infinity; | |
x2 = y2 = -Infinity; | |
// Compute bounds. | |
while (++i < n) { | |
p = points[i]; | |
if (p.x < x1) x1 = p.x; | |
if (p.y < y1) y1 = p.y; | |
if (p.x > x2) x2 = p.x; | |
if (p.y > y2) y2 = p.y; | |
} | |
// Squarify the bounds. | |
var dx = x2 - x1, | |
dy = y2 - y1; | |
if (dx > dy) y2 = y1 + dx; | |
else x2 = x1 + dy; | |
} | |
} | |
// Recursively inserts the specified point p at the node n or one of its | |
// descendants. The bounds are defined by [x1, x2] and [y1, y2]. | |
function insert(n, p, x1, y1, x2, y2) { | |
if (isNaN(p.x) || isNaN(p.y)) return; // ignore invalid points | |
if (n.leaf) { | |
var v = n.point; | |
if (v) { | |
// If the point at this leaf node is at the same position as the new | |
// point we are adding, we leave the point associated with the | |
// internal node while adding the new point to a child node. This | |
// avoids infinite recursion. | |
if ((Math.abs(v.x - p.x) + Math.abs(v.y - p.y)) < .01) { | |
insertChild(n, p, x1, y1, x2, y2); | |
} else { | |
n.point = null; | |
insertChild(n, v, x1, y1, x2, y2); | |
insertChild(n, p, x1, y1, x2, y2); | |
} | |
} else { | |
n.point = p; | |
} | |
} else { | |
insertChild(n, p, x1, y1, x2, y2); | |
} | |
} | |
// Recursively inserts the specified point p into a descendant of node n. The | |
// bounds are defined by [x1, x2] and [y1, y2]. | |
function insertChild(n, p, x1, y1, x2, y2) { | |
// Compute the split point, and the quadrant in which to insert p. | |
var sx = (x1 + x2) * .5, | |
sy = (y1 + y2) * .5, | |
right = p.x >= sx, | |
bottom = p.y >= sy, | |
i = (bottom << 1) + right; | |
// Recursively insert into the child node. | |
n.leaf = false; | |
n = n.nodes[i] || (n.nodes[i] = d3_geom_quadtreeNode()); | |
// Update the bounds as we recurse. | |
if (right) x1 = sx; else x2 = sx; | |
if (bottom) y1 = sy; else y2 = sy; | |
insert(n, p, x1, y1, x2, y2); | |
} | |
// Create the root node. | |
var root = d3_geom_quadtreeNode(); | |
root.add = function(p) { | |
insert(root, p, x1, y1, x2, y2); | |
}; | |
root.visit = function(f) { | |
d3_geom_quadtreeVisit(f, root, x1, y1, x2, y2); | |
}; | |
// Insert all points. | |
points.forEach(root.add); | |
return root; | |
}; | |
function d3_geom_quadtreeNode() { | |
return { | |
leaf: true, | |
nodes: [], | |
point: null | |
}; | |
} | |
function d3_geom_quadtreeVisit(f, node, x1, y1, x2, y2) { | |
if (!f(node, x1, y1, x2, y2)) { | |
var sx = (x1 + x2) * .5, | |
sy = (y1 + y2) * .5, | |
children = node.nodes; | |
if (children[0]) d3_geom_quadtreeVisit(f, children[0], x1, y1, sx, sy); | |
if (children[1]) d3_geom_quadtreeVisit(f, children[1], sx, y1, x2, sy); | |
if (children[2]) d3_geom_quadtreeVisit(f, children[2], x1, sy, sx, y2); | |
if (children[3]) d3_geom_quadtreeVisit(f, children[3], sx, sy, x2, y2); | |
} | |
} | |
function d3_geom_quadtreePoint(p) { | |
return { | |
x: p[0], | |
y: p[1] | |
}; | |
} | |
d3.time = {}; | |
var d3_time = Date; | |
function d3_time_utc() { | |
this._ = new Date(arguments.length > 1 | |
? Date.UTC.apply(this, arguments) | |
: arguments[0]); | |
} | |
d3_time_utc.prototype = { | |
getDate: function() { return this._.getUTCDate(); }, | |
getDay: function() { return this._.getUTCDay(); }, | |
getFullYear: function() { return this._.getUTCFullYear(); }, | |
getHours: function() { return this._.getUTCHours(); }, | |
getMilliseconds: function() { return this._.getUTCMilliseconds(); }, | |
getMinutes: function() { return this._.getUTCMinutes(); }, | |
getMonth: function() { return this._.getUTCMonth(); }, | |
getSeconds: function() { return this._.getUTCSeconds(); }, | |
getTime: function() { return this._.getTime(); }, | |
getTimezoneOffset: function() { return 0; }, | |
valueOf: function() { return this._.valueOf(); }, | |
setDate: function() { d3_time_prototype.setUTCDate.apply(this._, arguments); }, | |
setDay: function() { d3_time_prototype.setUTCDay.apply(this._, arguments); }, | |
setFullYear: function() { d3_time_prototype.setUTCFullYear.apply(this._, arguments); }, | |
setHours: function() { d3_time_prototype.setUTCHours.apply(this._, arguments); }, | |
setMilliseconds: function() { d3_time_prototype.setUTCMilliseconds.apply(this._, arguments); }, | |
setMinutes: function() { d3_time_prototype.setUTCMinutes.apply(this._, arguments); }, | |
setMonth: function() { d3_time_prototype.setUTCMonth.apply(this._, arguments); }, | |
setSeconds: function() { d3_time_prototype.setUTCSeconds.apply(this._, arguments); }, | |
setTime: function() { d3_time_prototype.setTime.apply(this._, arguments); } | |
}; | |
var d3_time_prototype = Date.prototype; | |
d3.time.format = function(template) { | |
var n = template.length; | |
function format(date) { | |
var string = [], | |
i = -1, | |
j = 0, | |
c, | |
f; | |
while (++i < n) { | |
if (template.charCodeAt(i) == 37) { | |
string.push( | |
template.substring(j, i), | |
(f = d3_time_formats[c = template.charAt(++i)]) | |
? f(date) : c); | |
j = i + 1; | |
} | |
} | |
string.push(template.substring(j, i)); | |
return string.join(""); | |
} | |
format.parse = function(string) { | |
var d = {y: 1900, m: 0, d: 1, H: 0, M: 0, S: 0, L: 0}, | |
i = d3_time_parse(d, template, string, 0); | |
if (i != string.length) return null; | |
// The am-pm flag is 0 for AM, and 1 for PM. | |
if ("p" in d) d.H = d.H % 12 + d.p * 12; | |
var date = new d3_time(); | |
date.setFullYear(d.y, d.m, d.d); | |
date.setHours(d.H, d.M, d.S, d.L); | |
return date; | |
}; | |
format.toString = function() { | |
return template; | |
}; | |
return format; | |
}; | |
function d3_time_parse(date, template, string, j) { | |
var c, | |
p, | |
i = 0, | |
n = template.length, | |
m = string.length; | |
while (i < n) { | |
if (j >= m) return -1; | |
c = template.charCodeAt(i++); | |
if (c == 37) { | |
p = d3_time_parsers[template.charAt(i++)]; | |
if (!p || ((j = p(date, string, j)) < 0)) return -1; | |
} else if (c != string.charCodeAt(j++)) { | |
return -1; | |
} | |
} | |
return j; | |
} | |
var d3_time_zfill2 = d3.format("02d"), | |
d3_time_zfill3 = d3.format("03d"), | |
d3_time_zfill4 = d3.format("04d"), | |
d3_time_sfill2 = d3.format("2d"); | |
var d3_time_formats = { | |
a: function(d) { return d3_time_weekdays[d.getDay()].substring(0, 3); }, | |
A: function(d) { return d3_time_weekdays[d.getDay()]; }, | |
b: function(d) { return d3_time_months[d.getMonth()].substring(0, 3); }, | |
B: function(d) { return d3_time_months[d.getMonth()]; }, | |
c: d3.time.format("%a %b %e %H:%M:%S %Y"), | |
d: function(d) { return d3_time_zfill2(d.getDate()); }, | |
e: function(d) { return d3_time_sfill2(d.getDate()); }, | |
H: function(d) { return d3_time_zfill2(d.getHours()); }, | |
I: function(d) { return d3_time_zfill2(d.getHours() % 12 || 12); }, | |
j: function(d) { return d3_time_zfill3(1 + d3.time.dayOfYear(d)); }, | |
L: function(d) { return d3_time_zfill3(d.getMilliseconds()); }, | |
m: function(d) { return d3_time_zfill2(d.getMonth() + 1); }, | |
M: function(d) { return d3_time_zfill2(d.getMinutes()); }, | |
p: function(d) { return d.getHours() >= 12 ? "PM" : "AM"; }, | |
S: function(d) { return d3_time_zfill2(d.getSeconds()); }, | |
U: function(d) { return d3_time_zfill2(d3.time.sundayOfYear(d)); }, | |
w: function(d) { return d.getDay(); }, | |
W: function(d) { return d3_time_zfill2(d3.time.mondayOfYear(d)); }, | |
x: d3.time.format("%m/%d/%y"), | |
X: d3.time.format("%H:%M:%S"), | |
y: function(d) { return d3_time_zfill2(d.getFullYear() % 100); }, | |
Y: function(d) { return d3_time_zfill4(d.getFullYear() % 10000); }, | |
Z: d3_time_zone, | |
"%": function(d) { return "%"; } | |
}; | |
var d3_time_parsers = { | |
a: d3_time_parseWeekdayAbbrev, | |
A: d3_time_parseWeekday, | |
b: d3_time_parseMonthAbbrev, | |
B: d3_time_parseMonth, | |
c: d3_time_parseLocaleFull, | |
d: d3_time_parseDay, | |
e: d3_time_parseDay, | |
H: d3_time_parseHour24, | |
I: d3_time_parseHour24, | |
// j: function(d, s, i) { /*TODO day of year [001,366] */ return i; }, | |
L: d3_time_parseMilliseconds, | |
m: d3_time_parseMonthNumber, | |
M: d3_time_parseMinutes, | |
p: d3_time_parseAmPm, | |
S: d3_time_parseSeconds, | |
// U: function(d, s, i) { /*TODO week number (sunday) [00,53] */ return i; }, | |
// w: function(d, s, i) { /*TODO weekday [0,6] */ return i; }, | |
// W: function(d, s, i) { /*TODO week number (monday) [00,53] */ return i; }, | |
x: d3_time_parseLocaleDate, | |
X: d3_time_parseLocaleTime, | |
y: d3_time_parseYear, | |
Y: d3_time_parseFullYear | |
// , | |
// Z: function(d, s, i) { /*TODO time zone */ return i; }, | |
// "%": function(d, s, i) { /*TODO literal % */ return i; } | |
}; | |
// Note: weekday is validated, but does not set the date. | |
function d3_time_parseWeekdayAbbrev(date, string, i) { | |
return d3_time_weekdayAbbrevRe.test(string.substring(i, i += 3)) ? i : -1; | |
} | |
// Note: weekday is validated, but does not set the date. | |
function d3_time_parseWeekday(date, string, i) { | |
d3_time_weekdayRe.lastIndex = 0; | |
var n = d3_time_weekdayRe.exec(string.substring(i, i + 10)); | |
return n ? i += n[0].length : -1; | |
} | |
var d3_time_weekdayAbbrevRe = /^(?:sun|mon|tue|wed|thu|fri|sat)/i, | |
d3_time_weekdayRe = /^(?:Sunday|Monday|Tuesday|Wednesday|Thursday|Friday|Saturday)/i, | |
d3_time_weekdays = ["Sunday", "Monday", "Tuesday", "Wednesday", "Thursday", "Friday", "Saturday"]; | |
function d3_time_parseMonthAbbrev(date, string, i) { | |
var n = d3_time_monthAbbrevLookup.get(string.substring(i, i += 3).toLowerCase()); | |
return n == null ? -1 : (date.m = n, i); | |
} | |
var d3_time_monthAbbrevLookup = d3.map({ | |
jan: 0, | |
feb: 1, | |
mar: 2, | |
apr: 3, | |
may: 4, | |
jun: 5, | |
jul: 6, | |
aug: 7, | |
sep: 8, | |
oct: 9, | |
nov: 10, | |
dec: 11 | |
}); | |
function d3_time_parseMonth(date, string, i) { | |
d3_time_monthRe.lastIndex = 0; | |
var n = d3_time_monthRe.exec(string.substring(i, i + 12)); | |
return n ? (date.m = d3_time_monthLookup.get(n[0].toLowerCase()), i += n[0].length) : -1; | |
} | |
var d3_time_monthRe = /^(?:January|February|March|April|May|June|July|August|September|October|November|December)/ig; | |
var d3_time_monthLookup = d3.map({ | |
january: 0, | |
february: 1, | |
march: 2, | |
april: 3, | |
may: 4, | |
june: 5, | |
july: 6, | |
august: 7, | |
september: 8, | |
october: 9, | |
november: 10, | |
december: 11 | |
}); | |
var d3_time_months = [ | |
"January", | |
"February", | |
"March", | |
"April", | |
"May", | |
"June", | |
"July", | |
"August", | |
"September", | |
"October", | |
"November", | |
"December" | |
]; | |
function d3_time_parseLocaleFull(date, string, i) { | |
return d3_time_parse(date, d3_time_formats.c.toString(), string, i); | |
} | |
function d3_time_parseLocaleDate(date, string, i) { | |
return d3_time_parse(date, d3_time_formats.x.toString(), string, i); | |
} | |
function d3_time_parseLocaleTime(date, string, i) { | |
return d3_time_parse(date, d3_time_formats.X.toString(), string, i); | |
} | |
function d3_time_parseFullYear(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 4)); | |
return n ? (date.y = +n[0], i += n[0].length) : -1; | |
} | |
function d3_time_parseYear(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.y = d3_time_century() + +n[0], i += n[0].length) : -1; | |
} | |
function d3_time_century() { | |
return ~~(new Date().getFullYear() / 1000) * 1000; | |
} | |
function d3_time_parseMonthNumber(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.m = n[0] - 1, i += n[0].length) : -1; | |
} | |
function d3_time_parseDay(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.d = +n[0], i += n[0].length) : -1; | |
} | |
// Note: we don't validate that the hour is in the range [0,23] or [1,12]. | |
function d3_time_parseHour24(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.H = +n[0], i += n[0].length) : -1; | |
} | |
function d3_time_parseMinutes(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.M = +n[0], i += n[0].length) : -1; | |
} | |
function d3_time_parseSeconds(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 2)); | |
return n ? (date.S = +n[0], i += n[0].length) : -1; | |
} | |
function d3_time_parseMilliseconds(date, string, i) { | |
d3_time_numberRe.lastIndex = 0; | |
var n = d3_time_numberRe.exec(string.substring(i, i + 3)); | |
return n ? (date.L = +n[0], i += n[0].length) : -1; | |
} | |
// Note: we don't look at the next directive. | |
var d3_time_numberRe = /\s*\d+/; | |
function d3_time_parseAmPm(date, string, i) { | |
var n = d3_time_amPmLookup.get(string.substring(i, i += 2).toLowerCase()); | |
return n == null ? -1 : (date.p = n, i); | |
} | |
var d3_time_amPmLookup = d3.map({ | |
am: 0, | |
pm: 1 | |
}); | |
// TODO table of time zone offset names? | |
function d3_time_zone(d) { | |
var z = d.getTimezoneOffset(), | |
zs = z > 0 ? "-" : "+", | |
zh = ~~(Math.abs(z) / 60), | |
zm = Math.abs(z) % 60; | |
return zs + d3_time_zfill2(zh) + d3_time_zfill2(zm); | |
} | |
d3.time.format.utc = function(template) { | |
var local = d3.time.format(template); | |
function format(date) { | |
try { | |
d3_time = d3_time_utc; | |
var utc = new d3_time(); | |
utc._ = date; | |
return local(utc); | |
} finally { | |
d3_time = Date; | |
} | |
} | |
format.parse = function(string) { | |
try { | |
d3_time = d3_time_utc; | |
var date = local.parse(string); | |
return date && date._; | |
} finally { | |
d3_time = Date; | |
} | |
}; | |
format.toString = local.toString; | |
return format; | |
}; | |
var d3_time_formatIso = d3.time.format.utc("%Y-%m-%dT%H:%M:%S.%LZ"); | |
d3.time.format.iso = Date.prototype.toISOString ? d3_time_formatIsoNative : d3_time_formatIso; | |
function d3_time_formatIsoNative(date) { | |
return date.toISOString(); | |
} | |
d3_time_formatIsoNative.parse = function(string) { | |
return new Date(string); | |
}; | |
d3_time_formatIsoNative.toString = d3_time_formatIso.toString; | |
function d3_time_interval(local, step, number) { | |
function round(date) { | |
var d0 = local(date), d1 = offset(d0, 1); | |
return date - d0 < d1 - date ? d0 : d1; | |
} | |
function ceil(date) { | |
step(date = local(new d3_time(date - 1)), 1); | |
return date; | |
} | |
function offset(date, k) { | |
step(date = new d3_time(+date), k); | |
return date; | |
} | |
function range(t0, t1, dt) { | |
var time = ceil(t0), times = []; | |
if (dt > 1) { | |
while (time < t1) { | |
if (!(number(time) % dt)) times.push(new Date(+time)); | |
step(time, 1); | |
} | |
} else { | |
while (time < t1) times.push(new Date(+time)), step(time, 1); | |
} | |
return times; | |
} | |
function range_utc(t0, t1, dt) { | |
try { | |
d3_time = d3_time_utc; | |
var utc = new d3_time_utc(); | |
utc._ = t0; | |
return range(utc, t1, dt); | |
} finally { | |
d3_time = Date; | |
} | |
} | |
local.floor = local; | |
local.round = round; | |
local.ceil = ceil; | |
local.offset = offset; | |
local.range = range; | |
var utc = local.utc = d3_time_interval_utc(local); | |
utc.floor = utc; | |
utc.round = d3_time_interval_utc(round); | |
utc.ceil = d3_time_interval_utc(ceil); | |
utc.offset = d3_time_interval_utc(offset); | |
utc.range = range_utc; | |
return local; | |
} | |
function d3_time_interval_utc(method) { | |
return function(date, k) { | |
try { | |
d3_time = d3_time_utc; | |
var utc = new d3_time_utc(); | |
utc._ = date; | |
return method(utc, k)._; | |
} finally { | |
d3_time = Date; | |
} | |
}; | |
} | |
d3.time.second = d3_time_interval(function(date) { | |
return new d3_time(Math.floor(date / 1e3) * 1e3); | |
}, function(date, offset) { | |
date.setTime(date.getTime() + Math.floor(offset) * 1e3); // DST breaks setSeconds | |
}, function(date) { | |
return date.getSeconds(); | |
}); | |
d3.time.seconds = d3.time.second.range; | |
d3.time.seconds.utc = d3.time.second.utc.range; | |
d3.time.minute = d3_time_interval(function(date) { | |
return new d3_time(Math.floor(date / 6e4) * 6e4); | |
}, function(date, offset) { | |
date.setTime(date.getTime() + Math.floor(offset) * 6e4); // DST breaks setMinutes | |
}, function(date) { | |
return date.getMinutes(); | |
}); | |
d3.time.minutes = d3.time.minute.range; | |
d3.time.minutes.utc = d3.time.minute.utc.range; | |
d3.time.hour = d3_time_interval(function(date) { | |
var timezone = date.getTimezoneOffset() / 60; | |
return new d3_time((Math.floor(date / 36e5 - timezone) + timezone) * 36e5); | |
}, function(date, offset) { | |
date.setTime(date.getTime() + Math.floor(offset) * 36e5); // DST breaks setHours | |
}, function(date) { | |
return date.getHours(); | |
}); | |
d3.time.hours = d3.time.hour.range; | |
d3.time.hours.utc = d3.time.hour.utc.range; | |
d3.time.day = d3_time_interval(function(date) { | |
return new d3_time(date.getFullYear(), date.getMonth(), date.getDate()); | |
}, function(date, offset) { | |
date.setDate(date.getDate() + offset); | |
}, function(date) { | |
return date.getDate() - 1; | |
}); | |
d3.time.days = d3.time.day.range; | |
d3.time.days.utc = d3.time.day.utc.range; | |
d3.time.dayOfYear = function(date) { | |
var year = d3.time.year(date); | |
return Math.floor((date - year) / 864e5 - (date.getTimezoneOffset() - year.getTimezoneOffset()) / 1440); | |
}; | |
d3_time_weekdays.forEach(function(day, i) { | |
day = day.toLowerCase(); | |
i = 7 - i; | |
var interval = d3.time[day] = d3_time_interval(function(date) { | |
(date = d3.time.day(date)).setDate(date.getDate() - (date.getDay() + i) % 7); | |
return date; | |
}, function(date, offset) { | |
date.setDate(date.getDate() + Math.floor(offset) * 7); | |
}, function(date) { | |
var day = d3.time.year(date).getDay(); | |
return Math.floor((d3.time.dayOfYear(date) + (day + i) % 7) / 7) - (day !== i); | |
}); | |
d3.time[day + "s"] = interval.range; | |
d3.time[day + "s"].utc = interval.utc.range; | |
d3.time[day + "OfYear"] = function(date) { | |
var day = d3.time.year(date).getDay(); | |
return Math.floor((d3.time.dayOfYear(date) + (day + i) % 7) / 7); | |
}; | |
}); | |
d3.time.week = d3.time.sunday; | |
d3.time.weeks = d3.time.sunday.range; | |
d3.time.weeks.utc = d3.time.sunday.utc.range; | |
d3.time.weekOfYear = d3.time.sundayOfYear; | |
d3.time.month = d3_time_interval(function(date) { | |
return new d3_time(date.getFullYear(), date.getMonth(), 1); | |
}, function(date, offset) { | |
date.setMonth(date.getMonth() + offset); | |
}, function(date) { | |
return date.getMonth(); | |
}); | |
d3.time.months = d3.time.month.range; | |
d3.time.months.utc = d3.time.month.utc.range; | |
d3.time.year = d3_time_interval(function(date) { | |
return new d3_time(date.getFullYear(), 0, 1); | |
}, function(date, offset) { | |
date.setFullYear(date.getFullYear() + offset); | |
}, function(date) { | |
return date.getFullYear(); | |
}); | |
d3.time.years = d3.time.year.range; | |
d3.time.years.utc = d3.time.year.utc.range; | |
function d3_time_scale(linear, methods, format) { | |
function scale(x) { | |
return linear(x); | |
} | |
scale.invert = function(x) { | |
return d3_time_scaleDate(linear.invert(x)); | |
}; | |
scale.domain = function(x) { | |
if (!arguments.length) return linear.domain().map(d3_time_scaleDate); | |
linear.domain(x); | |
return scale; | |
}; | |
scale.nice = function(m) { | |
var extent = d3_time_scaleExtent(scale.domain()); | |
return scale.domain([m.floor(extent[0]), m.ceil(extent[1])]); | |
}; | |
scale.ticks = function(m, k) { | |
var extent = d3_time_scaleExtent(scale.domain()); | |
if (typeof m !== "function") { | |
var span = extent[1] - extent[0], | |
target = span / m, | |
i = d3.bisect(d3_time_scaleSteps, target); | |
if (i == d3_time_scaleSteps.length) return methods.year(extent, m); | |
if (!i) return linear.ticks(m).map(d3_time_scaleDate); | |
if (Math.log(target / d3_time_scaleSteps[i - 1]) < Math.log(d3_time_scaleSteps[i] / target)) --i; | |
m = methods[i]; | |
k = m[1]; | |
m = m[0].range; | |
} | |
return m(extent[0], new Date(+extent[1] + 1), k); // inclusive upper bound | |
}; | |
scale.tickFormat = function() { | |
return format; | |
}; | |
scale.copy = function() { | |
return d3_time_scale(linear.copy(), methods, format); | |
}; | |
// TOOD expose d3_scale_linear_rebind? | |
return d3.rebind(scale, linear, "range", "rangeRound", "interpolate", "clamp"); | |
} | |
// TODO expose d3_scaleExtent? | |
function d3_time_scaleExtent(domain) { | |
var start = domain[0], stop = domain[domain.length - 1]; | |
return start < stop ? [start, stop] : [stop, start]; | |
} | |
function d3_time_scaleDate(t) { | |
return new Date(t); | |
} | |
function d3_time_scaleFormat(formats) { | |
return function(date) { | |
var i = formats.length - 1, f = formats[i]; | |
while (!f[1](date)) f = formats[--i]; | |
return f[0](date); | |
}; | |
} | |
function d3_time_scaleSetYear(y) { | |
var d = new Date(y, 0, 1); | |
d.setFullYear(y); // Y2K fail | |
return d; | |
} | |
function d3_time_scaleGetYear(d) { | |
var y = d.getFullYear(), | |
d0 = d3_time_scaleSetYear(y), | |
d1 = d3_time_scaleSetYear(y + 1); | |
return y + (d - d0) / (d1 - d0); | |
} | |
var d3_time_scaleSteps = [ | |
1e3, // 1-second | |
5e3, // 5-second | |
15e3, // 15-second | |
3e4, // 30-second | |
6e4, // 1-minute | |
3e5, // 5-minute | |
9e5, // 15-minute | |
18e5, // 30-minute | |
36e5, // 1-hour | |
108e5, // 3-hour | |
216e5, // 6-hour | |
432e5, // 12-hour | |
864e5, // 1-day | |
1728e5, // 2-day | |
6048e5, // 1-week | |
2592e6, // 1-month | |
7776e6, // 3-month | |
31536e6 // 1-year | |
]; | |
var d3_time_scaleLocalMethods = [ | |
[d3.time.second, 1], | |
[d3.time.second, 5], | |
[d3.time.second, 15], | |
[d3.time.second, 30], | |
[d3.time.minute, 1], | |
[d3.time.minute, 5], | |
[d3.time.minute, 15], | |
[d3.time.minute, 30], | |
[d3.time.hour, 1], | |
[d3.time.hour, 3], | |
[d3.time.hour, 6], | |
[d3.time.hour, 12], | |
[d3.time.day, 1], | |
[d3.time.day, 2], | |
[d3.time.week, 1], | |
[d3.time.month, 1], | |
[d3.time.month, 3], | |
[d3.time.year, 1] | |
]; | |
var d3_time_scaleLocalFormats = [ | |
[d3.time.format("%Y"), function(d) { return true; }], | |
[d3.time.format("%B"), function(d) { return d.getMonth(); }], | |
[d3.time.format("%b %d"), function(d) { return d.getDate() != 1; }], | |
[d3.time.format("%a %d"), function(d) { return d.getDay() && d.getDate() != 1; }], | |
[d3.time.format("%I %p"), function(d) { return d.getHours(); }], | |
[d3.time.format("%I:%M"), function(d) { return d.getMinutes(); }], | |
[d3.time.format(":%S"), function(d) { return d.getSeconds(); }], | |
[d3.time.format(".%L"), function(d) { return d.getMilliseconds(); }] | |
]; | |
var d3_time_scaleLinear = d3.scale.linear(), | |
d3_time_scaleLocalFormat = d3_time_scaleFormat(d3_time_scaleLocalFormats); | |
d3_time_scaleLocalMethods.year = function(extent, m) { | |
return d3_time_scaleLinear.domain(extent.map(d3_time_scaleGetYear)).ticks(m).map(d3_time_scaleSetYear); | |
}; | |
d3.time.scale = function() { | |
return d3_time_scale(d3.scale.linear(), d3_time_scaleLocalMethods, d3_time_scaleLocalFormat); | |
}; | |
var d3_time_scaleUTCMethods = d3_time_scaleLocalMethods.map(function(m) { | |
return [m[0].utc, m[1]]; | |
}); | |
var d3_time_scaleUTCFormats = [ | |
[d3.time.format.utc("%Y"), function(d) { return true; }], | |
[d3.time.format.utc("%B"), function(d) { return d.getUTCMonth(); }], | |
[d3.time.format.utc("%b %d"), function(d) { return d.getUTCDate() != 1; }], | |
[d3.time.format.utc("%a %d"), function(d) { return d.getUTCDay() && d.getUTCDate() != 1; }], | |
[d3.time.format.utc("%I %p"), function(d) { return d.getUTCHours(); }], | |
[d3.time.format.utc("%I:%M"), function(d) { return d.getUTCMinutes(); }], | |
[d3.time.format.utc(":%S"), function(d) { return d.getUTCSeconds(); }], | |
[d3.time.format.utc(".%L"), function(d) { return d.getUTCMilliseconds(); }] | |
]; | |
var d3_time_scaleUTCFormat = d3_time_scaleFormat(d3_time_scaleUTCFormats); | |
function d3_time_scaleUTCSetYear(y) { | |
var d = new Date(Date.UTC(y, 0, 1)); | |
d.setUTCFullYear(y); // Y2K fail | |
return d; | |
} | |
function d3_time_scaleUTCGetYear(d) { | |
var y = d.getUTCFullYear(), | |
d0 = d3_time_scaleUTCSetYear(y), | |
d1 = d3_time_scaleUTCSetYear(y + 1); | |
return y + (d - d0) / (d1 - d0); | |
} | |
d3_time_scaleUTCMethods.year = function(extent, m) { | |
return d3_time_scaleLinear.domain(extent.map(d3_time_scaleUTCGetYear)).ticks(m).map(d3_time_scaleUTCSetYear); | |
}; | |
d3.time.scale.utc = function() { | |
return d3_time_scale(d3.scale.linear(), d3_time_scaleUTCMethods, d3_time_scaleUTCFormat); | |
}; | |
})(); |
<html> | |
<head> | |
<title>Interactive Line Graph</title> | |
<!--<script src="http://d3js.org/d3.v2.js"></script>--> | |
<script src="d3.v2.patched.js"></script> | |
<script src="http://code.jquery.com/jquery-1.7.2.min.js"></script> | |
<script src="sample_data.js"></script> | |
<script src="line-graph.js"></script> | |
<link rel="stylesheet" href="style.css" type="text/css"> | |
<style> | |
body { | |
font-family: "Helvetica Neue", Helvetica; | |
} | |
p { | |
clear:both; | |
top: 20px; | |
} | |
div.aGraph { | |
clear:both; | |
margin-bottom: 30px; | |
} | |
</style> | |
</head> | |
<body> | |
<div id="graph1" class="aGraph" style="position:relative;width:100%;height:400px"></div> | |
<script> | |
/* | |
* Note how the 'data' object is added to here before rendering to provide decoration information. | |
* <p> | |
* This is purposefully done here instead of in data.js as an example of how data would come from a server | |
* and then have presentation information injected into it (rather than as separate arguments in another object) | |
* and passed into LineGraph. | |
* | |
* Also, CSS can be used to style colors etc, but this is also doable via the 'data' object so that the styling | |
* of different data points can be done in code which is often more natural for display names, legends, line colors etc | |
*/ | |
// add presentation logic for 'data' object using optional data arguments | |
data["displayNames"] = ["Loss", "OutRestarts", "RetransSegs", "EstabResets", "InSegs", "OutSegs"]; | |
data["colors"] = ["orange","purple", "red", "darkred", "#56ad0a", "#408000"]; | |
data["scale"] = "log" | |
// create graph now that we've added presentation config | |
var l1 = new LineGraph({containerId: 'graph1', data: data}); | |
</script> | |
</body> | |
</html> |
/** | |
* Create and draw a new line-graph. | |
* | |
* Arguments: | |
* containerId => id of container to insert SVG into [REQUIRED] | |
* | |
*/ | |
function LineGraph(argsMap) { | |
/* *************************************************************** */ | |
/* public methods */ | |
/* *************************************************************** */ | |
var self = this; | |
/** | |
* This allows appending new data points to the end of the lines and sliding them within the time window: | |
* - x-axis will slide to new range | |
* - new data will be added to the end of the lines | |
* - equivalent number of data points will be removed from beginning of lines | |
* - lines will be transitioned through horizontoal slide to show progression over time | |
*/ | |
this.slideData = function(newData) { | |
// validate data | |
var tempData = processDataMap(newData); | |
//debug("Existing startTime: " + data.startTime + " endTime: " + data.endTime); | |
//debug("New startTime: " + tempData.startTime + " endTime: " + tempData.endTime); | |
// validate step is the same on each | |
if(tempData.step != newData.step) { | |
throw new Error("The step size on appended data must be the same as the existing data => " + data.step + " != " + tempData.step); | |
} | |
var numSteps = tempData.values[0].length; | |
tempData.values.forEach(function(dataArrays, i) { | |
var existingDataArrayForIndex = data.values[i]; | |
dataArrays.forEach(function(v) { | |
// push each new value onto the existing data array | |
existingDataArrayForIndex.push(v); | |
// shift the front value off to compensate for what we just added | |
existingDataArrayForIndex.shift(); | |
}) | |
}) | |
// shift domain by number of data elements we just added | |
// == numElements * step | |
data.startTime = new Date(data.startTime.getTime() + (data.step * numSteps)); | |
data.endTime = tempData.endTime; | |
//debug("Updated startTime: " + data.startTime + " endTime: " + data.endTime); | |
/* | |
* The following transition implementation was learned from examples at http://bost.ocks.org/mike/path/ | |
* In particular, view the HTML source for the last example on the page inside the tick() function. | |
*/ | |
// redraw each of the lines | |
// Transitions are turned off on this since the small steps we're taking | |
// don't actually look good when animated and it uses unnecessary CPU | |
// The quick-steps look cleaner, and keep the axis/line in-sync instead of jittering | |
redrawAxes(false); | |
redrawLines(false); | |
// slide the lines left | |
graph.selectAll("g .lines path") | |
.attr("transform", "translate(-" + x(numSteps*data.step) + ")"); | |
handleDataUpdate(); | |
} | |
/** | |
* This does a full refresh of the data: | |
* - x-axis will slide to new range | |
* - lines will change in place | |
* | |
* This is not expected to be used much if at all. | |
*/ | |
this.updateData = function(newData) { | |
// data is being replaced, not appended so we re-assign 'data' | |
data = processDataMap(newData); | |
// and then we rebind data.values to the lines | |
graph.selectAll("g .lines path").data(data.values) | |
// redraw (with transition) | |
redrawAxes(true); | |
// transition is 'false' for lines because the transition is really weird when the data significantly changes | |
// such as going from 700 points to 150 to 400 | |
// and because of that we rebind the data anyways which doesn't work with transitions very well at all | |
redrawLines(false); | |
handleDataUpdate(); | |
} | |
this.switchToPowerScale = function() { | |
yScale = 'pow'; | |
redrawAxes(true); | |
redrawLines(true); | |
} | |
this.switchToLogScale = function() { | |
yScale = 'log'; | |
redrawAxes(true); | |
redrawLines(true); | |
} | |
this.switchToLinearScale = function() { | |
yScale = 'linear'; | |
redrawAxes(true); | |
redrawLines(true); | |
} | |
/* *************************************************************** */ | |
/* private variables */ | |
/* *************************************************************** */ | |
// the div we insert the graph into | |
var containerId; | |
var container; | |
// functions we use to display and interact with the graphs and lines | |
var graph, x, y, xAxis, yAxisLeft, yAxisLeftDomainStart, maxYscale, linesGroup, linesGroupText, lines, lineFunction; | |
var yScale = 'pow'; // can be pow, log, linear | |
var scales = [['linear','Linear'], ['pow','Power'], ['log','Log']]; | |
var hoverContainer, hoverLine, hoverLineXOffset, hoverLineYOffset, hoverLineGroup; | |
var legendFontSize = 12; // we can resize dynamically to make fit so we remember it here | |
// instance storage of data to be displayed | |
var data; | |
// define dimensions of graph | |
var margin = [-1, -1, -1, -1]; // margins (top, right, bottom, left) | |
var w, h; // width & height | |
var transitionDuration = 500; | |
var formatNumber = d3.format(",.0f") // for formatting integers | |
var tickFormatForLogScale = function(d) { return formatNumber(d) }; | |
// used to track if the user is interacting via mouse/finger instead of trying to determine | |
// by analyzing various element class names to see if they are visible or not | |
var userCurrentlyInteracting = false; | |
var currentUserPositionX = -1; | |
/* *************************************************************** */ | |
/* initialization and validation */ | |
/* *************************************************************** */ | |
var _init = function() { | |
// required variables that we'll throw an error on if we don't find | |
containerId = getRequiredVar(argsMap, 'containerId'); | |
container = document.querySelector('#' + containerId); | |
// assign instance vars from dataMap | |
data = processDataMap(getRequiredVar(argsMap, 'data')); | |
/* set the default scale */ | |
yScale = data.scale; | |
// margins with defaults | |
margin[0] = getOptionalVar(argsMap, 'marginTop', 20) // marginTop allows fitting the actions, date and top of axis labels | |
margin[1] = getOptionalVar(argsMap, 'marginRight', 20) | |
margin[2] = getOptionalVar(argsMap, 'marginBottom', 35) // marginBottom allows fitting the legend along the bottom | |
margin[3] = getOptionalVar(argsMap, 'marginLeft', 80) // marginLeft allows fitting the axis labels | |
initDimensions(); | |
createGraph() | |
//debug("Initialization successful for container: " + containerId) | |
// window resize listener | |
// de-dupe logic from http://stackoverflow.com/questions/667426/javascript-resize-event-firing-multiple-times-while-dragging-the-resize-handle/668185#668185 | |
var TO = false; | |
$(window).resize(function(){ | |
if(TO !== false) | |
clearTimeout(TO); | |
TO = setTimeout(handleWindowResizeEvent, 200); //200 is time in miliseconds | |
}); | |
} | |
/* *************************************************************** */ | |
/* private methods */ | |
/* *************************************************************** */ | |
/* | |
* Return a validated data map | |
* | |
* Expects a map like this: | |
* {"start": 1335035400000, "end": 1335294600000, "step": 300000, "values": [[28,22,45,65,34], [45,23,23,45,65]]} | |
*/ | |
var processDataMap = function(dataMap) { | |
// assign data values to plot over time | |
var dataValues = getRequiredVar(dataMap, 'values', "The data object must contain a 'values' value with a data array.") | |
var startTime = new Date(getRequiredVar(dataMap, 'start', "The data object must contain a 'start' value with the start time in milliseconds since epoch.")) | |
var endTime = new Date(getRequiredVar(dataMap, 'end', "The data object must contain an 'end' value with the end time in milliseconds since epoch.")) | |
var step = getRequiredVar(dataMap, 'step', "The data object must contain a 'step' value with the time in milliseconds between each data value.") | |
var names = getRequiredVar(dataMap, 'names', "The data object must contain a 'names' array with the same length as 'values' with a name for each data value array.") | |
var displayNames = getOptionalVar(dataMap, 'displayNames', names); | |
var colors = getOptionalVar(dataMap, 'colors', []); | |
var maxValues = []; | |
/* copy the dataValues array, do NOT assign the reference otherwise we modify the original source when we shift/push data */ | |
var newDataValues = []; | |
dataValues.forEach(function (v, i) { | |
newDataValues[i] = v.slice(0); | |
maxValues[i] = d3.max(newDataValues[i]) | |
}) | |
if(colors.length == 0) { | |
displayNames.forEach(function (v, i) { | |
// set the default | |
colors[i] = "black"; | |
}) | |
} | |
return { | |
"values" : newDataValues, | |
"startTime" : startTime, | |
"endTime" : endTime, | |
"step" : step, | |
"names" : names, | |
"displayNames": displayNames, | |
"colors": colors, | |
"scale" : getOptionalVar(dataMap, 'scale', yScale), | |
"maxValues" : maxValues | |
} | |
} | |
var redrawAxes = function(withTransition) { | |
initY(); | |
initX(); | |
if(withTransition) { | |
// slide x-axis to updated location | |
graph.selectAll("g .x.axis").transition() | |
.duration(transitionDuration) | |
.ease("linear") | |
.call(xAxis) | |
// slide y-axis to updated location | |
graph.selectAll("g .y.axis").transition() | |
.duration(transitionDuration) | |
.ease("linear") | |
.call(yAxisLeft) | |
} else { | |
// slide x-axis to updated location | |
graph.selectAll("g .x.axis") | |
.call(xAxis) | |
// slide y-axis to updated location | |
graph.selectAll("g .y.axis") | |
.call(yAxisLeft) | |
} | |
} | |
var redrawLines = function(withTransition) { | |
if(withTransition) { | |
graph.selectAll("g .lines path") | |
.transition() | |
.duration(transitionDuration) | |
.ease("linear") | |
.attr("d", lineFunction) | |
.attr("transform", null); | |
} else { | |
graph.selectAll("g .lines path") | |
.attr("d", lineFunction) | |
.attr("transform", null); | |
} | |
} | |
/* | |
* Allow re-initializing the y function at any time. | |
* - it will properly determine what scale is being used based on last user choice (via public switchScale methods) | |
*/ | |
var initY = function() { | |
maxYscale = calculateMaxY(data) | |
//debug("initY => maxYscale: " + maxYscale); | |
if(yScale == 'pow') { | |
y = d3.scale.pow().exponent(0.3).domain([0, maxYscale]).range([h, 0]).nice(); | |
} else if(yScale == 'log') { | |
// we can't have 0 so will represent 0 with a very small number | |
// 0.1 works to represent 0, 0.01 breaks the tickFormatter | |
y = d3.scale.log().domain([0.1, maxYscale]).range([h, 0]).nice(); | |
} else if(yScale == 'linear') { | |
y = d3.scale.linear().domain([0, maxYscale]).range([h, 0]).nice(); | |
} | |
yAxisLeft = d3.svg.axis().scale(y).ticks(6, tickFormatForLogScale).orient("left"); | |
} | |
/* | |
* Whenever we add/update data we want to re-calculate if the max Y scale has changed | |
*/ | |
var calculateMaxY = function(data) { | |
// Y scale will fit values from 0-10 within pixels h-0 (Note the inverted domain for the y-scale: bigger is up!) | |
// we get the max of the max of values for the given index since we expect an array of arrays | |
//var maxY = d3.max(data.values, function(d) { return d3.max(d); }); | |
// we can shortcut to data.maxValues since we've already calculated it in processDataMap | |
return d3.max(data.maxValues); | |
} | |
/* | |
* Allow re-initializing the x function at any time. | |
*/ | |
var initX = function() { | |
// X scale starts at epoch time 1335035400000, ends at 1335294600000 with 300s increments | |
x = d3.time.scale().domain([data.startTime, data.endTime]).range([0, w]); | |
// create yAxis (with ticks) | |
xAxis = d3.svg.axis().scale(x).tickSize(-h).tickSubdivide(1); | |
// without ticks | |
//xAxis = d3.svg.axis().scale(x); | |
} | |
/** | |
* Creates the SVG elements and displays the line graph. | |
* | |
* Expects to be called once during instance initialization. | |
*/ | |
var createGraph = function() { | |
// Add an SVG element with the desired dimensions and margin. | |
graph = d3.select("#" + containerId).append("svg:svg") | |
.attr("class", "line-graph") | |
.attr("width", w + margin[1] + margin[3]) | |
.attr("height", h + margin[0] + margin[2]) | |
.append("svg:g") | |
.attr("transform", "translate(" + margin[3] + "," + margin[0] + ")"); | |
initX() | |
// Add the x-axis. | |
graph.append("svg:g") | |
.attr("class", "x axis") | |
.attr("transform", "translate(0," + h + ")") | |
.call(xAxis); | |
// y is all done in initY because we need to re-assign vars quite often to change scales | |
initY(); | |
// Add the y-axis to the left | |
graph.append("svg:g") | |
.attr("class", "y axis") | |
.attr("transform", "translate(-10,0)") | |
.call(yAxisLeft); | |
// create line function used to plot our data | |
lineFunction = d3.svg.line() | |
// assign the X function to plot our line as we wish | |
.x(function(d,i) { | |
/* | |
* Our x value is defined by time and since our data doesn't have per-metric timestamps | |
* we calculate time as (startTime + the step between metrics * the index) | |
* | |
* We also reach out to the persisted 'data' object for time | |
* since the 'd' passed in here is one of the children, not the parent object | |
*/ | |
var _x = x(data.startTime.getTime() + (data.step*i)); | |
// verbose logging to show what's actually being done | |
//debug("Line X => index: " + i + " scale: " + _x) | |
// return the X coordinate where we want to plot this datapoint | |
return _x; | |
}) | |
.y(function(d) { | |
if(yScale == 'log' && d < 0.1) { | |
// log scale can't have 0s, so we set it to the smallest value we set on y | |
d = 0.1; | |
} | |
var _y = y(d); | |
// verbose logging to show what's actually being done | |
//debug("Line Y => data: " + d + " scale: " + _y) | |
// return the Y coordinate where we want to plot this datapoint | |
return _y; | |
}); | |
// append a group to contain all lines | |
lines = graph.append("svg:g") | |
.attr("class", "lines") | |
.selectAll("path") | |
.data(data.values); // bind the array of arrays | |
// persist this reference so we don't do the selector every mouse event | |
hoverContainer = container.querySelector('g .lines'); | |
$(container).mouseleave(function(event) { | |
handleMouseOutGraph(event); | |
}) | |
$(container).mousemove(function(event) { | |
handleMouseOverGraph(event); | |
}) | |
// add a line group for each array of values (it will iterate the array of arrays bound to the data function above) | |
linesGroup = lines.enter().append("g") | |
.attr("class", function(d, i) { | |
return "line_group series_" + i; | |
}); | |
// add path (the actual line) to line group | |
linesGroup.append("path") | |
.attr("class", function(d, i) { | |
//debug("Appending line [" + containerId + "]: " + i) | |
return "line series_" + i; | |
}) | |
.attr("fill", "none") | |
.attr("stroke", function(d, i) { | |
return data.colors[i]; | |
}) | |
.attr("d", lineFunction) // use the 'lineFunction' to create the data points in the correct x,y axis | |
.on('mouseover', function(d, i) { | |
handleMouseOverLine(d, i); | |
}); | |
// add line label to line group | |
linesGroupText = linesGroup.append("svg:text"); | |
linesGroupText.attr("class", function(d, i) { | |
//debug("Appending line [" + containerId + "]: " + i) | |
return "line_label series_" + i; | |
}) | |
.text(function(d, i) { | |
return ""; | |
}); | |
// add a 'hover' line that we'll show as a user moves their mouse (or finger) | |
// so we can use it to show detailed values of each line | |
hoverLineGroup = graph.append("svg:g") | |
.attr("class", "hover-line"); | |
// add the line to the group | |
hoverLine = hoverLineGroup | |
.append("svg:line") | |
.attr("x1", 10).attr("x2", 10) // vertical line so same value on each | |
.attr("y1", 0).attr("y2", h); // top to bottom | |
// hide it by default | |
hoverLine.classed("hide", true); | |
createScaleButtons(); | |
createDateLabel(); | |
createLegend(); | |
setValueLabelsToLatest(); | |
} | |
/** | |
* Create a legend that displays the name of each line with appropriate color coding | |
* and allows for showing the current value when doing a mouseOver | |
*/ | |
var createLegend = function() { | |
// append a group to contain all lines | |
var legendLabelGroup = graph.append("svg:g") | |
.attr("class", "legend-group") | |
.selectAll("g") | |
.data(data.displayNames) | |
.enter().append("g") | |
.attr("class", "legend-labels"); | |
legendLabelGroup.append("svg:text") | |
.attr("class", "legend name") | |
.text(function(d, i) { | |
return d; | |
}) | |
.attr("font-size", legendFontSize) | |
.attr("fill", function(d, i) { | |
// return the color for this row | |
return data.colors[i]; | |
}) | |
.attr("y", function(d, i) { | |
return h+28; | |
}) | |
// put in placeholders with 0 width that we'll populate and resize dynamically | |
legendLabelGroup.append("svg:text") | |
.attr("class", "legend value") | |
.attr("font-size", legendFontSize) | |
.attr("fill", function(d, i) { | |
return data.colors[i]; | |
}) | |
.attr("y", function(d, i) { | |
return h+28; | |
}) | |
// x values are not defined here since those get dynamically calculated when data is set in displayValueLabelsForPositionX() | |
} | |
/** | |
* Create scale buttons for switching the y-axis | |
*/ | |
var createScaleButtons = function() { | |
var cumulativeWidth = 0; | |
// append a group to contain all lines | |
var buttonGroup = graph.append("svg:g") | |
.attr("class", "scale-button-group") | |
.selectAll("g") | |
.data(scales) | |
.enter().append("g") | |
.attr("class", "scale-buttons") | |
.append("svg:text") | |
.attr("class", "scale-button") | |
.text(function(d, i) { | |
return d[1]; | |
}) | |
.attr("font-size", "12") // this must be before "x" which dynamically determines width | |
.attr("fill", function(d) { | |
if(d[0] == yScale) { | |
return "black"; | |
} else { | |
return "blue"; | |
} | |
}) | |
.classed("selected", function(d) { | |
if(d[0] == yScale) { | |
return true; | |
} else { | |
return false; | |
} | |
}) | |
.attr("x", function(d, i) { | |
// return it at the width of previous labels (where the last one ends) | |
var returnX = cumulativeWidth; | |
// increment cumulative to include this one | |
cumulativeWidth += this.clientWidth+5; | |
return returnX; | |
}) | |
.attr("y", -4) | |
.on('click', function(d, i) { | |
handleMouseClickScaleButton(this, d, i); | |
}); | |
} | |
var handleMouseClickScaleButton = function(button, buttonData, index) { | |
if(index == 0) { | |
self.switchToLinearScale(); | |
} else if(index == 1) { | |
self.switchToPowerScale(); | |
} else if(index == 2) { | |
self.switchToLogScale(); | |
} | |
// change text decoration | |
graph.selectAll('.scale-button') | |
.attr("fill", function(d) { | |
if(d[0] == yScale) { | |
return "black"; | |
} else { | |
return "blue"; | |
} | |
}) | |
.classed("selected", function(d) { | |
if(d[0] == yScale) { | |
return true; | |
} else { | |
return false; | |
} | |
}) | |
} | |
/** | |
* Create a data label | |
*/ | |
var createDateLabel = function() { | |
var date = new Date(); // placeholder just so we can calculate a valid width | |
// create the date label to the left of the scaleButtons group | |
var buttonGroup = graph.append("svg:g") | |
.attr("class", "date-label-group") | |
.append("svg:text") | |
.attr("class", "date-label") | |
.attr("text-anchor", "end") // set at end so we can position at far right edge and add text from right to left | |
.attr("font-size", "10") | |
.attr("y", -4) | |
.attr("x", w) | |
.text(date.toDateString() + " " + date.toLocaleTimeString()) | |
} | |
/** | |
* Called when a user mouses over a line. | |
*/ | |
var handleMouseOverLine = function(lineData, index) { | |
//debug("MouseOver line [" + containerId + "] => " + index) | |
// user is interacting | |
userCurrentlyInteracting = true; | |
} | |
/** | |
* Called when a user mouses over the graph. | |
*/ | |
var handleMouseOverGraph = function(event) { | |
var mouseX = event.pageX-hoverLineXOffset; | |
var mouseY = event.pageY-hoverLineYOffset; | |
//debug("MouseOver graph [" + containerId + "] => x: " + mouseX + " y: " + mouseY + " height: " + h + " event.clientY: " + event.clientY + " offsetY: " + event.offsetY + " pageY: " + event.pageY + " hoverLineYOffset: " + hoverLineYOffset) | |
if(mouseX >= 0 && mouseX <= w && mouseY >= 0 && mouseY <= h) { | |
// show the hover line | |
hoverLine.classed("hide", false); | |
// set position of hoverLine | |
hoverLine.attr("x1", mouseX).attr("x2", mouseX) | |
displayValueLabelsForPositionX(mouseX) | |
// user is interacting | |
userCurrentlyInteracting = true; | |
currentUserPositionX = mouseX; | |
} else { | |
// proactively act as if we've left the area since we're out of the bounds we want | |
handleMouseOutGraph(event) | |
} | |
} | |
var handleMouseOutGraph = function(event) { | |
// hide the hover-line | |
hoverLine.classed("hide", true); | |
setValueLabelsToLatest(); | |
//debug("MouseOut graph [" + containerId + "] => " + mouseX + ", " + mouseY) | |
// user is no longer interacting | |
userCurrentlyInteracting = false; | |
currentUserPositionX = -1; | |
} | |
/* // if we need to support older browsers without pageX/pageY we can use this | |
var getMousePositionFromEvent = function(e, element) { | |
var posx = 0; | |
var posy = 0; | |
if (!e) var e = window.event; | |
if (e.pageX || e.pageY) { | |
posx = e.pageX; | |
posy = e.pageY; | |
} | |
else if (e.clientX || e.clientY) { | |
posx = e.clientX + document.body.scrollLeft | |
+ document.documentElement.scrollLeft; | |
posy = e.clientY + document.body.scrollTop | |
+ document.documentElement.scrollTop; | |
} | |
return {x: posx, y: posy}; | |
} | |
*/ | |
/* | |
* Handler for when data is updated. | |
*/ | |
var handleDataUpdate = function() { | |
if(userCurrentlyInteracting) { | |
// user is interacting, so let's update values to wherever the mouse/finger is on the updated data | |
if(currentUserPositionX > -1) { | |
displayValueLabelsForPositionX(currentUserPositionX) | |
} | |
} else { | |
// the user is not interacting with the graph, so we'll update the labels to the latest | |
setValueLabelsToLatest(); | |
} | |
} | |
/** | |
* Display the data values at position X in the legend value labels. | |
*/ | |
var displayValueLabelsForPositionX = function(xPosition, withTransition) { | |
var animate = false; | |
if(withTransition != undefined) { | |
if(withTransition) { | |
animate = true; | |
} | |
} | |
var dateToShow; | |
var labelValueWidths = []; | |
graph.selectAll("text.legend.value") | |
.text(function(d, i) { | |
var valuesForX = getValueForPositionXFromData(xPosition, data.values[i]); | |
dateToShow = valuesForX.date; | |
return valuesForX.value; | |
}) | |
.attr("x", function(d, i) { | |
labelValueWidths[i] = this.clientWidth; | |
}) | |
// position label names | |
var cumulativeWidth = 0; | |
var labelNameEnd = []; | |
graph.selectAll("text.legend.name") | |
.attr("x", function(d, i) { | |
// return it at the width of previous labels (where the last one ends) | |
var returnX = cumulativeWidth; | |
// increment cumulative to include this one + the value label at this index | |
cumulativeWidth += this.clientWidth+4+labelValueWidths[i]+8; | |
// store where this ends | |
labelNameEnd[i] = returnX + this.clientWidth+5; | |
return returnX; | |
}) | |
// remove last bit of padding from cumulativeWidth | |
cumulativeWidth = cumulativeWidth - 8; | |
if(cumulativeWidth > w) { | |
// decrease font-size to make fit | |
legendFontSize = legendFontSize-1; | |
//debug("making legend fit by decreasing font size to: " + legendFontSize) | |
graph.selectAll("text.legend.name") | |
.attr("font-size", legendFontSize); | |
graph.selectAll("text.legend.value") | |
.attr("font-size", legendFontSize); | |
// recursively call until we get ourselves fitting | |
displayValueLabelsForPositionX(xPosition); | |
return; | |
} | |
// position label values | |
graph.selectAll("text.legend.value") | |
.attr("x", function(d, i) { | |
return labelNameEnd[i]; | |
}) | |
// show the date | |
graph.select('text.date-label').text(dateToShow.toDateString() + " " + dateToShow.toLocaleTimeString()) | |
// move the group of labels to the right side | |
if(animate) { | |
console.log("animate the transition") | |
graph.selectAll("g.legend-group g") | |
.transition() | |
.duration(transitionDuration) | |
.ease("linear") | |
.attr("transform", "translate(" + (w-cumulativeWidth) +",0)") | |
} else { | |
graph.selectAll("g.legend-group g") | |
.attr("transform", "translate(" + (w-cumulativeWidth) +",0)") | |
} | |
} | |
/** | |
* Set the value labels to whatever the latest data point is. | |
*/ | |
var setValueLabelsToLatest = function(withTransition) { | |
displayValueLabelsForPositionX(w, withTransition); | |
} | |
/** | |
* Convert back from an X position on the graph to a data value from the given array (one of the lines) | |
* Return {value: value, date, date} | |
*/ | |
var getValueForPositionXFromData = function(xPosition, d) { | |
// get the date on x-axis for the current location | |
var xValue = x.invert(xPosition); | |
// Calculate the value from this date by determining the 'index' | |
// within the data array that applies to this value | |
var index = (xValue.getTime() - data.startTime) / data.step; | |
if(index >= d.length) { | |
index = d.length-1; | |
} | |
// The date we're given is interpolated so we have to round off to get the nearest | |
// index in the data array for the xValue we're given. | |
// Once we have the index, we then retrieve the data from the d[] array | |
index = Math.round(index); | |
// bucketDate is the date rounded to the correct 'step' instead of interpolated | |
var bucketDate = new Date(data.startTime.getTime() + data.step * index); | |
var v = d[index]; | |
return {value: Math.round(v), date: bucketDate}; | |
} | |
/** | |
* Called when the window is resized to redraw graph accordingly. | |
*/ | |
var handleWindowResizeEvent = function() { | |
//debug("Window Resize Event [" + containerId + "] => resizing graph") | |
initDimensions(); | |
initX(); | |
// reset width/height of SVG | |
d3.select("#" + containerId + " svg") | |
.attr("width", w + margin[1] + margin[3]) | |
.attr("height", h + margin[0] + margin[2]); | |
// reset transform of x axis | |
graph.selectAll("g .x.axis") | |
.attr("transform", "translate(0," + h + ")"); | |
// reset legendFontSize on window resize so it has a chance to re-calculate to a bigger size if it can now fit | |
legendFontSize = 12; | |
//debug("making legend fit by decreasing font size to: " + legendFontSize) | |
graph.selectAll("text.legend.name") | |
.attr("font-size", legendFontSize); | |
graph.selectAll("text.legend.value") | |
.attr("font-size", legendFontSize); | |
// move date label | |
graph.select('text.date-label') | |
.transition() | |
.duration(transitionDuration) | |
.ease("linear") | |
.attr("x", w) | |
// redraw everything | |
redrawAxes(true); | |
redrawLines(true); | |
// force legend to redraw | |
setValueLabelsToLatest(true); | |
} | |
/** | |
* Set height/width dimensions based on container. | |
*/ | |
var initDimensions = function() { | |
// automatically size to the container using JQuery to get width/height | |
w = $("#" + containerId).width() - margin[1] - margin[3]; // width | |
h = $("#" + containerId).height() - margin[0] - margin[2]; // height | |
// make sure to use offset() and not position() as we want it relative to the document, not its parent | |
hoverLineXOffset = margin[3]+$(container).offset().left; | |
hoverLineYOffset = margin[0]+$(container).offset().top; | |
} | |
/** | |
* Return the value from argsMap for key or throw error if no value found | |
*/ | |
var getRequiredVar = function(argsMap, key, message) { | |
if(!argsMap[key]) { | |
if(!message) { | |
throw new Error(key + " is required") | |
} else { | |
throw new Error(message) | |
} | |
} else { | |
return argsMap[key] | |
} | |
} | |
/** | |
* Return the value from argsMap for key or defaultValue if no value found | |
*/ | |
var getOptionalVar = function(argsMap, key, defaultValue) { | |
if(!argsMap[key]) { | |
return defaultValue | |
} else { | |
return argsMap[key] | |
} | |
} | |
var error = function(message) { | |
console.log("ERROR: " + message) | |
} | |
var debug = function(message) { | |
console.log("DEBUG: " + message) | |
} | |
/* *************************************************************** */ | |
/* execute init now that everything is defined */ | |
/* *************************************************************** */ | |
_init(); | |
}; | |
/* | |
* sample data to plot over time | |
*/ | |
var data = {"start":1337904120000,"end":1337990160000,"step":120000,"names":["tcpLoss","tcpOutRsts","tcpRetransSegs","tcpEstabResets","tcpInSegs","tcpOutSegs"],"values":[[18.7121272524272, 19.407714107605, 19.3277841133646, 13.5810933505499, 18.4365300643209, 16.679901628138, 22.7706084591238, 21.6890815752897, 20.4429130899286, 13.392022494336, 14.7903434466492, 21.9454504429186, 17.9283131035878, 26.3008473163018, 16.655770530425, 15.3941967416249, 20.6576092752736, 17.8501668932744, 22.31671028375, 18.127765502755, 14.8946831108562, 19.8750107850179, 21.7521487422449, 25.0938816616684, 24.0263774985188, 23.3835795704626, 22.0456621784964, 25.8898634804509, 23.6172994390702, 20.6075796977499, 21.4612787181434, 26.2610277350052, 25.1676721095174, 23.8697735861402, 24.7606369301268, 24.8569055481754, 31.2762305103566, 26.8152640687095, 26.3336882274355, 23.216709552853, 20.9972844628098, 25.0323567529978, 22.7063321136885, 24.515027303022, 30.6850326293777, 26.0276205142196, 23.9241731316151, 27.0924985153117, 32.6119004797758, 29.2006025233895, 24.3147071140647, 30.2145379087913, 31.6340214789738, 34.4611153317038, 23.9043214286633, 29.5883935951691, 24.7435425117654, 30.6527068080202, 26.3252769162451, 31.4993133275862, 31.7321881560974, 32.3080689326865, 30.1592902999493, 24.303129691132, 32.7701503784708, 27.8273517019115, 38.4599610319444, 32.2560755265611, 28.084983075071, 26.8306213799577, 25.3111333219136, 26.4401793113968, 29.2339602887261, 32.1032997040857, 36.0911654561785, 30.354511715826, 29.2285090911413, 25.4100845960727, 29.2015861164177, 30.5035175631638, 30.7869687990594, 34.829029661332, 28.4214910952231, 25.727299721681, 39.901650672384, 40.937507744081, 32.9507646307189, 38.264546949496, 28.2900912881342, 31.4392052255488, 39.0670938732782, 44.6929208559558, 43.4832505787338, 46.6569777758545, 40.4515007724782, 45.3387939487165, 35.1495445369295, 36.4124744932292, 32.3726965082487, 38.8556972523605, 42.8236240093818, 42.8241085749679, 35.8981668390607, 34.8015786442537, 38.4507019646232, 37.3454673064313, 33.975164472567, 40.1415282675854, 33.5823382138683, 37.4742111541926, 37.2484549930684, 33.2259275124512, 34.3239521800579, 35.0939639702499, 34.9542788685528, 34.0295075385051, 25.9470538165166, 39.1474873426183, 21.0976153958409, 27.2215098303884, 28.084675491549, 30.7589974577928, 29.1029523916149, 21.7299409774475, 21.9330044462894, 23.8094077178872, 24.1934433994585, 21.6004908877919, 23.5583700532278, 23.8586172300914, 21.4589391440225, 24.752694951456, 32.736495515903, 20.658142063983, 21.4254509221591, 17.8640565252578, 19.2275139311654, 18.2805949795505, 19.3971588103556, 17.4695966066216, 16.5231795518246, 17.2778197256894, 18.0545790435444, 20.880672951784, 17.5099179843447, 18.7749475325626, 18.842139189475, 18.7000428984209, 22.1821748591189, 17.5314260536504, 18.334702520298, 14.0263355724654, 14.8877803385658, 15.4104763578306, 10.7290012489528, 15.6329296294372, 15.304043183553, 13.8097219066868, 10.9119643307211, 11.6983898745241, 11.6373591281075, 12.366979298997, 11.6101928723942, 12.1210022285834, 16.8510855710075, 15.1846880311099, 10.4168221635639, 11.000688438257, 10.4168400973143, 10.4339240279346, 11.7947513175111, 9.9657537776121, 9.01303564458136, 10.8976341345682, 8.84846441800259, 9.7345233135324, 10.086726014644, 9.62367570404549, 10.6123236244124, 9.88321564677095, 8.52393035511517, 16.3528197822795, 7.08662928367396, 6.92039597618211, 6.65966749222533, 11.1682846045715, 7.09876347970183, 11.2772557782683, 6.06422679685477, 8.87198775981189, 8.11776395535159, 6.81903218185731, 6.85949672265013, 7.17438184608289, 6.06932832644717, 11.7479278405026, 4.84057767240249, 7.17742207470049, 5.53285982838392, 9.51940470252601, 5.26559521030181, 5.64706455515031, 5.33475526785748, 4.21039982675087, 4.00155739420486, 5.29448954626092, 5.31529087182168, 4.21838802274817, 4.14679605674899, 4.5126478983535, 5.18272987597093, 3.58386091643617, 3.8906392845722, 5.07792459432711, 5.44467606094529, 6.36532452084947, 3.83142025257422, 5.82369356925454, 10.2407547885775, 3.75778541819039, 4.04934369304752, 4.62212689155411, 3.52420382318571, 4.81110713715301, 3.43813451755836, 3.47144896710458, 4.31172632603022, 2.78552697833511, 3.05661237086307, 3.59254582189864, 4.19666901804499, 3.6377751561616, 3.85999056956771, 3.10679463935021, 2.31539787028075, 2.57457482477905, 3.50220786316049, 4.7759358597463, 3.14155017308456, 4.95924593811336, 5.32313921833327, 2.500127269714, 4.17310931619152, 3.53950776239743, 2.66684408044516, 1.97678172703758, 2.00860182971841, 2.08239253671354, 3.31867624743631, 2.33696854376675, 2.75981343393596, 2.35130653595158, 1.92463183681319, 3.19046587226225, 2.44742207532011, 1.95799761504636, 2.69281641825626, 1.73715777124536, 2.80565259267618, 2.31057105979103, 2.70054186379643, 1.63320369612685, 1.52744503890169, 1.62300723975713, 3.51433483847824, 2.64730498246615, 2.69802454577122, 2.29321994773427, 2.19415259397876, 1.89292997099994, 1.93025910887915, 2.32548152106411, 1.8288246876038, 1.03126755378521, 1.81191748888118, 0.976203899459083, 1.13121423844441, 1.58068502004125, 1.74666232668709, 2.41495544743978, 1.42254434428113, 1.50143562770994, 1.73196040396545, 2.03623012392391, 1.83518586699861, 0.967420785441956, 0.832600984345845, 1.03394243924482, 1.06584693056347, 1.41842144584628, 1.03322465118022, 1.75509217880056, 2.15342554349918, 4.24218482669783, 1.97910705697719, 1.47130506349613, 1.09961008500924, 0.785143608390063, 1.32506478380198, 1.17742978373631, 1.78909949962765, 1.58237139135389, 1.75052085154434, 1.15144829213192, 1.09892420062287, 1.2192903672956, 1.02167462839195, 1.53788426339666, 1.75348823451059, 1.0458126666739, 1.06533777698745, 1.21606431070846, 1.33177205800172, 1.51568912971892, 1.89057095252003, 1.61077362604358, 2.13960716509863, 1.93247806687019, 0.994645157303942, 1.13969469737961, 0.877799290171222, 1.61062750937121, 4.77884511781023, 2.05150714534873, 2.18984629995242, 2.2863639679849, 1.51612892567357, 1.63128522803849, 2.09237308262326, 1.82560376409625, 1.87873990562258, 0.877657008356496, 0.910083012721252, 0.70657133717523, 0.485608263766405, 1.51176712835421, 1.35841775584298, 2.38919362773064, 1.35272619479431, 1.40644545934436, 1.44683925773078, 1.09946884325206, 1.12208826088833, 1.59725528565941, 2.33424008013005, 1.46736838688389, 1.38683528314403, 1.28404132819801, 1.14909079854106, 5.15465621687253, 2.15295009114614, 1.28291279814006, 1.75460288749322, 1.73891781107466, 2.47094714926151, 2.54829826794164, 2.35067199399227, 2.81276802314172, 1.52790147244571, 1.34492348795159, 2.75602760629241, 1.8016422264671, 2.74789907250109, 1.61842039821472, 1.69213691185621, 1.5780534907156, 2.54840009583326, 2.09441630510073, 1.22569203469848, 1.84466550075091, 2.06683796798984, 2.22575141499466, 1.80733841098084, 6.93611759511244, 2.13608440395662, 2.46647687131752, 1.50536973114854, 1.9633342420419, 1.65334414226122, 3.13350428626685, 2.17381381102036, 2.24065581995144, 2.03762792301427, 2.68282765194376, 2.69394886709533, 2.56244723406981, 2.25865940861433, 2.49343566518345, 2.85298586145392, 2.37231006915661, 2.42849062909699, 2.60692045298735, 3.12584984331503, 2.28598196379889, 3.21721458585497, 4.83553741714895, 2.94490708008697, 2.80443270547655, 3.03784671577085, 3.27070391218704, 3.89324307507398, 2.04230522512632, 3.40375454163657, 2.98544400659616, 3.17407230901142, 3.01080199866967, 3.15513211988253, 3.69670405105913, 3.63326838633295, 3.88957988443466, 3.41624672278579, 2.5636450760305, 3.71012119969652, 5.37889865171584, 5.91410055447843, 3.73548719250101, 2.18186932222471, 4.21249877624422, 4.09092947877833, 3.62822076718694, 4.82854777947043, 4.00541867244471, 3.14716275059573, 4.44065490906755, 4.17310178501531, 4.59895422684582, 4.59725857653117, 4.61353279321066, 4.09176656222864, 4.10942516360486, 4.24717468400847, 4.50406373664847, 9.63163024707169, 5.5572571333449, 5.03331949528769, 4.44057190816276, 3.72514093920984, 4.32858698998245, 4.04881625498206, 4.7023626806671, 5.0632163644781, 4.54550288730324, 5.99681122666341, 5.79322986224402, 3.81136891012823, 3.44264139189706, 3.52257364789668, 4.18558089209982, 3.73476856808712, 4.55298001540438, 7.628988515872, 7.76684733321902, 6.58765994245746, 4.85828765977437, 3.79610907206907, 4.49434274462389, 5.53163732135882, 5.04628083793935, 5.07504110385743, 6.0675921631524, 5.4747115583915, 5.30270723907165, 4.61715962002374, 6.48638444311431, 5.36283301361674, 5.78773161832446, 4.54769344844483, 5.33869613390329, 8.62688842842484, 6.13896353054867, 4.86231595729978, 5.11958483728862, 6.62719285270485, 5.85442837579776, 5.21456456356698, 4.9344470782088, 6.29901769131139, 4.76269798074141, 6.30550556063437, 7.2897371038078, 6.26127784955045, 5.65920863300344, 4.44263403981738, 7.42671503277749, 4.80578555414334, 6.88869923890634, 9.1613444344553, 5.8641352366821, 8.21729951452989, 5.70388333662074, 5.99118587423621, 5.83911066841155, 7.19902245987401, 6.04217081793707, 6.16407292793303, 6.81439925696096, 4.858503376845, 3.92928861602483, 5.61185264278719, 6.54938998778302, 6.82427755100046, 7.30215080832917, 8.04123410434443, 9.86122902413197, 9.43061569907532, 5.87935292507911, 5.26189593509122, 7.00841865524365, 5.14988082294245, 3.80151091897265, 6.44395792159014, 6.47070546325449, 7.41399023846595, 8.67617186147405, 5.74864108922208, 6.0427195846985, 7.57251053554375, 6.25362914741001, 6.64850718297979, 7.69773780177901, 5.86323935901049, 15.6881700757575, 8.50217075909971, 6.78758457644235, 4.82665596921448, 6.51698310622209, 6.96598761307408, 7.51821300141297, 6.59744730041237, 6.47369241974812, 6.82681081082423, 9.09862932273364, 8.19376928376808, 9.65386092546404, 10.0126426538655, 7.58019333209901, 8.80710420465972, 10.5942776127654, 13.3652849039056, 9.19582642142888, 9.33551218353642, 7.53834439634332, 7.13231539289027, 9.11405062782699, 8.45334323715705, 5.68310439792765, 7.98435096019141, 8.55786010717316, 7.16421445765726, 6.79927098077381, 11.0657191407312, 11.607956838212, 9.0048250335125, 8.09702008956683, 8.04812242849854, 13.6380109404672, 10.2223430611465, 7.92141704849399, 8.65384070333201, 8.77673879321341, 9.3945367184235, 8.25629297207137, 11.2928440822451, 10.8025020999036, 9.68428570730285, 7.7029283614904, 6.63886230616101, 9.47085670471025, 5.50003437654154, 8.98191612285915, 12.6783994736607, 9.91195943696063, 14.0179495635466, 12.9199482602755, 9.41547674009756, 8.64167033664181, 9.49081973604008, 8.44490451415586, 9.78855618369007, 10.4852550339919, 10.1786446220766, 9.68708961745529, 9.5514102603569, 9.42132169011186, 11.1575623799558, 10.2793923394743, 9.58919221283491, 7.52539715446104, 6.92566722594898, 15.4720917763347, 12.6054627255635, 10.8948436082225, 9.96025858462236, 9.91682764858577, 9.62564775182708, 10.2364913841094, 10.6259345319709, 14.3901299692101, 11.5963270176197, 10.5338473758735, 9.48568348097335, 10.6451476574454, 9.88652044511226, 10.3155567009298, 11.1768408887989, 15.7318048679364, 12.9641556809195, 10.2546375135264, 11.3332919828399, 14.7663609854964, 11.4239358104593, 12.1669729354729, 9.15885181746393, 12.0466499769806, 9.91177425892064, 15.7804724618588, 10.7704938820177, 10.0467444975612, 9.82072528959987, 9.04605346378074, 11.8254772832574, 12.3078648206234, 23.7065406741446, 17.0899601765348, 14.6866475506041, 15.6471125253432, 14.3768218654099, 8.95594756666349, 10.2019868498931, 12.7190289025304, 12.7767491119238, 13.0636403535763, 13.9427790435098, 12.9936261124698, 13.0958252965499, 13.221160205296, 11.5295370897473, 13.7708973128445, 20.1957608409729, 16.9152315332667, 16.8515954040597, 13.7046878611376, 12.53622600785, 11.6146440190783, 14.8101522243063, 12.4154691985642, 13.001495972436, 14.1660662152902, 13.9784540166778, 13.7712688522045, 14.3849244082714, 14.065732939257, 12.4171525688284, 15.5036666679352, 16.1544556567862, 13.5022417604916, 13.5293704072025, 11.0806657167737, 15.3350115187986, 13.7318718944385, 14.8987656440946, 15.963259638314, 13.2087867981593, 12.742301917467, 15.5521470630148, 17.2526385807936, 14.6558702002893, 17.2184400507992, 14.9623277583585, 19.902233577749, 18.8840894695129, 18.9830228828168, 13.7952661877562, 12.9726669747856, 16.2680678503516, 14.9982235758788, 13.6895281906399, 14.7835759796325, 15.0184315079795, 15.2951778849439, 15.5582041023399, 17.812508958762, 17.0624425397115, 17.9071731520045, 17.8090315641614, 22.2135797269966, 19.1401915420176, 20.1222745669819, 21.9243638084197, 18.3505549344964, 21.284696844577, 20.6226819144954, 18.8611086113076, 16.3264699654885, 19.3845785413944, 20.7827645822635, 15.2971602717726, 18.0351571885811, 19.7446888621149, 22.8313996835722, 22.6796406492501, 29.1320958796644, 19.709982992175, 23.2658626304522, 22.8821791280897, 21.2120591898943, 24.5547851430152, 21.988051042716, 21.2816857598408, 18.2679433072725, 16.9997273558867, 19.6765707399281, 26.4111043639625, 28.1278395773115, 21.1391347258443, 23.7771004743963, 33.135306862842, 20.6340818016456],[184.453364042007, 174.325733063562, 174.785821123128, 170.897448749769, 184.688374565818, 182.695617359068, 192.629930372637, 191.092830059613, 168.021086436663, 137.547986972637, 143.155948691829, 159.669168704871, 174.2766400256, 213.851082791906, 164.103942646048, 163.972020632109, 192.869838252442, 125.244886153205, 192.276696729828, 167.560384879644, 157.24902289914, 167.592545875477, 175.522817880425, 185.98997685487, 183.492494351958, 167.719564367331, 162.193648670999, 177.522864424711, 180.274457123187, 191.883474200229, 211.303483907028, 198.771281770358, 190.459684820923, 198.018186047482, 169.641728233717, 167.848490323075, 178.867407041595, 169.295846506795, 181.383005257028, 161.023245315641, 157.979003200895, 166.118632967434, 136.579837034881, 177.502038082166, 225.389238207572, 213.800556337085, 171.873571379936, 153.830482112722, 169.45623353605, 178.188466803043, 170.252906735323, 192.571129699323, 173.607204425907, 170.297289359977, 165.923683510223, 160.763596887835, 161.084886325412, 153.742642044951, 169.418810156376, 176.244548515642, 191.735866174185, 192.514319767501, 158.187411476809, 132.56164702735, 166.948861897231, 174.160361064245, 174.54985873036, 169.258479232013, 179.415246905553, 168.290535254037, 165.919504001704, 159.825790570352, 179.440205891202, 218.732054452761, 238.959231647384, 216.593743743959, 184.974948542332, 169.509706007335, 156.298063505719, 158.875144568977, 167.350733026752, 164.336935502108, 144.339516204534, 133.658217054257, 169.079806217701, 210.562120123274, 210.264708748047, 210.091171029989, 143.136685156958, 141.21138557597, 174.006977327282, 157.493553310691, 152.261788426043, 148.134908356693, 154.521937479024, 153.650545988062, 146.421832794311, 152.027188276035, 112.197061370188, 136.095705475247, 143.373457947579, 148.8249271146, 146.414726397873, 136.584531814917, 137.51237585233, 141.122624347881, 137.456101262617, 150.351618426898, 137.397373184687, 133.034823788271, 140.91858771368, 138.095583804235, 133.463584052418, 128.947471752384, 132.06803083349, 131.096742277568, 123.468062046252, 147.468544227236, 122.804410635423, 133.64420151035, 143.062083673925, 138.962911940542, 132.88021135369, 102.554988880153, 107.533760506009, 127.705370915144, 121.169353786201, 127.281955859219, 119.885217026686, 118.559707382958, 117.467188590757, 115.258814920376, 113.491531487705, 114.400012156363, 117.054806693348, 122.41939973371, 125.396731640147, 115.717972394184, 112.812582172767, 110.908009164021, 113.568651776739, 114.196177155011, 108.64115777976, 108.612107999998, 107.076366659383, 111.029937704479, 105.524392020033, 104.244120109109, 106.31752180001, 104.601226374801, 106.148746908522, 104.629217996452, 101.330938633341, 102.181403020655, 80.8673986064748, 89.5916895169855, 97.2089012231505, 92.053073449369, 83.6210479131563, 92.7725767590298, 90.4178211485089, 96.7008902798059, 93.2216695586274, 90.9118197006472, 90.7946672747277, 92.8404757254334, 94.8555154691919, 86.5107461709745, 89.3741540482026, 93.5189683906148, 91.6240062794302, 94.1978908125214, 88.9204468310093, 86.8531702172954, 90.9072788543755, 85.1114016862051, 82.3553883650434, 82.9568681167306, 84.1371980504794, 88.448916030467, 90.2313084518693, 81.9349487762501, 66.5451578746281, 64.1607059308244, 71.8478798069134, 81.2336170782529, 59.6669005133474, 63.0666758414297, 81.4662595266942, 82.4097295365817, 75.4201715851814, 79.0276107092399, 78.4444162586859, 77.5162135791188, 72.9511101091128, 75.5467207981938, 79.7113904171212, 76.2270204757205, 77.2308499174783, 62.1663412426444, 69.5991501191791, 78.401895826766, 84.9253226939775, 77.4632820907112, 70.9787237756021, 72.1517891167968, 65.457388180457, 51.4151619907496, 62.1159432832308, 74.7227235896172, 76.2841447212961, 71.6099501899942, 69.5135530286673, 68.2625556128757, 67.9928515559182, 70.1989662206922, 69.4601656295348, 71.686174346234, 68.3333272626304, 64.5006613277287, 70.2711551470622, 62.5684999483661, 65.3689225143878, 61.9142322763806, 65.9527329905785, 65.038324346745, 59.3231824670686, 58.6111130953573, 60.7584581148061, 60.0229354441155, 57.0409775809357, 58.646482976592, 64.4102211484228, 59.8349601636398, 57.1315146080856, 55.7398277404259, 58.0113456567182, 53.4779733864174, 49.9847336969713, 45.1213484281311, 57.8119551722629, 59.7749568244375, 58.4366105392952, 60.73671755102, 56.1835182283774, 58.8512222841341, 53.3534939042053, 47.7747676946901, 58.1600757486888, 51.6133331652245, 58.8342070079083, 59.765003557606, 56.645768842201, 54.3227569406961, 45.0695944952697, 43.3673040534758, 48.0235527755585, 55.2375297689956, 52.7599558009683, 52.6954287830392, 53.8972870892507, 53.523325962965, 50.5969444287723, 52.1821677932465, 51.1854805778587, 48.5041315126671, 60.5882237005571, 52.1165234042767, 55.4079910427226, 56.317401410395, 58.6723076594935, 59.7881731675947, 57.144812900086, 57.8581599672303, 54.8414744063004, 50.1718184995509, 42.2296602701438, 55.8075323028279, 59.2727368426044, 57.5933459701594, 55.2227356684494, 58.1880768112024, 54.5490233793253, 55.1223537370641, 55.8947925926963, 56.5157703061466, 42.4715771300507, 49.575812882477, 59.6804949321054, 55.4920503910606, 47.1598713740532, 49.8686021068306, 52.4190461092101, 53.7359425433086, 51.7126056129078, 54.9089835969035, 51.836852159925, 41.4135037827885, 52.9250655550209, 60.5989519025812, 59.5945680549115, 57.4705356574476, 61.6819162295842, 65.1208361721361, 57.3938337947662, 56.5427132313201, 57.1025240165876, 60.3389600638071, 59.2335432603994, 57.4661603437131, 53.6360843263717, 53.5818738700821, 59.9914302151141, 59.0284622841828, 62.085995641281, 62.3957897528584, 57.353285480549, 59.852284121133, 60.2493026294502, 64.0707331782789, 65.3173903309338, 58.4522957834322, 58.8602624518773, 63.7904237475066, 67.1996594106076, 65.3293770499845, 62.3225847223063, 66.2297596046802, 65.0105021437127, 66.9188716439029, 78.9675385629559, 75.2049222810441, 64.7475238509859, 69.2863900888112, 69.4177600793606, 67.9500938234326, 70.6160005143378, 65.8613123124644, 67.425352101904, 73.7288688486597, 71.2451879058455, 54.2367946159527, 64.6562586288048, 70.2508742586551, 74.0922312210909, 76.5211478886475, 75.577150576231, 78.2627714670461, 74.8711275586556, 78.805111794386, 79.5357382346058, 79.4628211968822, 81.4503181806595, 84.0025842606929, 77.7211351807078, 79.6098627111882, 76.0076024511228, 79.8417696026707, 61.396960171692, 71.159435942309, 82.3769588654397, 86.9175172012233, 82.838330727242, 68.0883959735467, 64.287145536323, 85.5709658204899, 87.2966993957477, 86.3665559948727, 97.8673441076496, 105.604884126756, 100.399378833551, 92.7462093699966, 87.9981390115212, 93.2477425018183, 87.5637859211434, 86.1730617697665, 91.070315220721, 86.4952396095288, 87.634343823463, 88.0213522385933, 84.0070976270056, 86.1351399033417, 86.1501794962369, 94.924279499512, 88.2576903034019, 94.0793247838366, 94.9191960724266, 88.6951283351129, 93.1943267673601, 96.5968416464492, 97.0069419712471, 80.4954698450863, 96.6548894922734, 101.4167643587, 89.0946632400828, 70.4228682810501, 78.304158583881, 89.7890974011019, 95.8170235965146, 91.884622722144, 94.1982846861858, 94.5556324842623, 96.4095962647336, 96.8033205464332, 102.573177531405, 102.190728342906, 108.350369100783, 99.6556756075659, 97.399565336417, 105.255317873229, 108.096506387964, 104.504932154377, 109.947140545106, 108.366745072042, 102.168538028578, 97.4101659759943, 82.2781473750023, 100.19833200617, 104.878769481885, 121.687471647165, 125.326460386692, 113.587037591943, 103.535958501779, 102.042178289109, 111.241292614373, 106.828405842952, 109.96678605395, 102.664655582511, 104.945644167032, 102.182093736108, 109.40383732921, 102.928800342871, 105.52567124555, 107.125071371721, 112.990031828264, 100.104975787553, 92.9081268371787, 82.0520842558901, 97.6863946225508, 112.923512788874, 105.947799867665, 108.202611733923, 101.273861203463, 104.877326933904, 101.400888210136, 83.1093532059942, 76.1864477473419, 107.269209657314, 110.97349225963, 107.850334518201, 116.94849967371, 109.836555720477, 107.647754377689, 85.0336348832776, 96.3892850389104, 108.158194153796, 99.5184795566399, 109.114631390098, 111.092726283879, 109.08872246486, 108.67205577427, 107.712348783484, 111.091837563977, 106.030962167586, 113.301552744955, 116.831258836191, 105.74837137673, 109.714714603668, 108.676696691298, 116.494512384064, 108.441047776623, 119.778259767571, 108.806206698785, 111.527663228968, 104.624762871134, 105.415846633367, 110.745654094806, 120.213169575721, 123.932639654856, 126.832187803095, 131.868206471783, 121.101880123384, 121.891489417247, 120.628897029692, 90.7442240941546, 99.8435539997233, 92.9662861844687, 99.4705149194531, 113.072451655315, 106.240938012569, 111.446002887733, 114.825765585968, 120.464944401321, 121.130356201152, 112.555287563816, 116.373249771748, 119.261634454649, 99.3082395542303, 101.86085919655, 119.720646264573, 119.739605024743, 118.78090601952, 127.168472895286, 121.084302070254, 127.95272531583, 128.62714133138, 129.400062348488, 116.884927579362, 104.311697089694, 102.925212427499, 129.515674408007, 128.671874673965, 124.66258010976, 125.521147250711, 86.9592817763918, 99.9355276026992, 113.265110574152, 113.733471945927, 108.002250899582, 114.717714800346, 114.36457710759, 106.342277121599, 105.237741128691, 96.2217164231579, 96.3436658331036, 89.1087766687716, 112.308439747583, 114.779303342421, 109.606415244839, 108.119791223034, 106.433868172914, 106.675536302737, 111.671186429632, 116.680995736504, 116.869443274691, 108.284167440737, 105.622625451559, 120.674578945768, 112.366208846089, 126.346903371147, 113.525319414896, 97.1697015367624, 93.7829119278645, 112.740513389115, 115.898428949956, 110.9784109272, 108.416838869095, 110.429763915435, 112.142895938579, 82.7822027663896, 110.993742332965, 108.2549246221, 104.039210570975, 107.565286182397, 112.787056280537, 120.801203912316, 109.527162327304, 106.286772111576, 113.13528025022, 117.103564941153, 118.345161836043, 119.145973612306, 119.637862128604, 117.78650016663, 118.484106708155, 128.381449735451, 120.800357335654, 95.2631733598206, 95.18101351883, 122.349278356507, 136.923105353409, 131.195185980002, 133.553705976484, 129.039169232509, 121.199019815214, 114.893201000288, 102.709575492891, 100.175623109795, 110.56888692965, 118.279497730262, 116.799763400021, 116.596422305187, 129.540997632958, 115.160365009011, 118.028937929919, 132.925739652578, 123.377407002744, 118.894709504077, 94.0402604845548, 117.737867907181, 141.390774365568, 126.927539485369, 126.625511040001, 124.930954818178, 123.928725940595, 126.798259954973, 124.296718807524, 127.041410585385, 134.059510348146, 146.51116463724, 148.100391615278, 134.982093826422, 140.471402024123, 121.785589795932, 121.092381175998, 113.230193381899, 114.417784309501, 128.618914108955, 129.869556628696, 125.065133334663, 126.638448869646, 109.510762465443, 104.361698835551, 127.851040656589, 131.82841605531, 126.918758260123, 140.106104524051, 127.074335242892, 116.311063094124, 102.429676349402, 126.445569069137, 104.715588630165, 133.92200106261, 143.461811925506, 129.580152976731, 140.551933134623, 136.104677861368, 109.288233128594, 120.466990988764, 140.750227115606, 143.107688005849, 130.246028117632, 143.662357483849, 142.925056312355, 169.33692692785, 148.385165256808, 134.475341661698, 137.184627160706, 132.522550715451, 133.7421508416, 137.993508088329, 134.327798560133, 133.39966616948, 132.737122650403, 110.261721390163, 149.330186250095, 129.815772158621, 134.036854982954, 134.523355672888, 133.015007324437, 131.287549004947, 131.936065385172, 131.976806171451, 131.302086408064, 130.390447287184, 139.252059832558, 132.966460796816, 139.771704397942, 144.69119002616, 129.300160270027, 124.091190255924, 137.394594988051, 133.850782646949, 137.580672316554, 141.431614596138, 139.382135619548, 139.663034492323, 136.984101601417, 140.653536880202, 145.753496303889, 136.779258927789, 144.097008607796, 147.177518523069, 142.454001712548, 156.357409524873, 119.157080593001, 122.344401357955, 137.86379819963, 151.600365006827, 143.264206193834, 143.711193505856, 137.955366279909, 149.374128696304, 145.788194142176, 145.642281069293, 144.334766011545, 137.432967361516, 144.447773970094, 130.800522080194, 148.03606794165, 147.566315140498, 154.63184437243, 137.340590763296, 136.541207841194, 141.858177372664, 126.871369938133, 118.132924238567, 143.260893630146, 141.733454720463, 145.317734351733, 145.42847038103, 131.589423012997, 148.886881077009, 145.558959298111, 150.172098091661, 155.118853655758, 150.855477483035, 142.452199213291, 150.387058228533, 141.584065559769, 113.76506621814, 124.18989518921, 147.088846509475, 146.199132221515, 140.955543021134, 138.988325869549, 143.660461869878, 133.604300973765],[229.025873000304, 150.870852524971, 155.874056465959, 196.947315032369, 218.040367996316, 203.309931029607, 224.281601115697, 170.271687486724, 135.753044895427, 109.493703481654, 107.124874734996, 200.414494319097, 216.493639168792, 211.184485302557, 126.677674545182, 170.080724746896, 155.385772555477, 178.333890098453, 199.425314138258, 155.664065566383, 131.434165212869, 146.48951125197, 174.411899786173, 195.770422568152, 172.47957909922, 150.182803207785, 165.270440026076, 196.359718239283, 179.487982172092, 165.938698662026, 236.361196807803, 196.267692280661, 250.013383018397, 218.491489618344, 191.824012816783, 215.948962609777, 260.174528981997, 191.471176075733, 157.839012007101, 138.157818429956, 152.162235348584, 226.775693089261, 181.8909504989, 198.174875174159, 254.598784596226, 234.844571788448, 198.940307805275, 164.071362380152, 192.708695641334, 179.909704231711, 166.772886396781, 169.626314105619, 180.53499343792, 169.591457279472, 154.388966267997, 176.271501167123, 227.899062886002, 214.399749668101, 159.860602977819, 195.472950038776, 259.931902218055, 230.835649335363, 159.876258458988, 190.096029628669, 173.634910239956, 180.137261326935, 192.783993686474, 178.268606050906, 165.971586520904, 155.882981852348, 160.916526458531, 174.88678745985, 219.078405635751, 239.226881599975, 280.567908422026, 241.397408899073, 186.138663373967, 212.565219427108, 216.712435495083, 191.144557202032, 201.644319438007, 193.723502174172, 189.167615427255, 211.564360154971, 202.512875564465, 314.339045069077, 234.137498011568, 254.992833624713, 190.202097139843, 200.118633131181, 305.285950141826, 240.12228799534, 241.516854663773, 250.96806295508, 204.885607814083, 248.421958212478, 208.547088925856, 200.781607042847, 171.73376048984, 164.201421634833, 209.032540388783, 193.109825079344, 194.061278959109, 164.76162425132, 172.729305358422, 174.400191637557, 182.048465921593, 158.350406493895, 157.884236043908, 201.92034839539, 162.997668970607, 148.55241937745, 150.813823523195, 160.286571952077, 154.152742181616, 152.929054311861, 126.580289367842, 147.255611782348, 134.778057957668, 151.252103763405, 228.148564750357, 163.168785649317, 147.049043336162, 126.790511993542, 124.72650938443, 134.056787972409, 136.047074618962, 128.603608836313, 155.465405847032, 124.854222526166, 130.458484638721, 155.523905707133, 142.802166851645, 116.90436300933, 136.363097772194, 126.29048477001, 123.49423188432, 109.164449278114, 111.618769267934, 97.5549446026419, 106.396818104567, 106.854260651774, 118.597842174781, 151.999232053126, 110.757824900565, 111.457552348286, 125.897181603142, 125.931779289685, 108.151741663073, 111.480520937661, 172.111684561702, 102.192933748096, 106.312301520059, 123.786739148283, 104.029130984918, 99.8681588988705, 109.332066174485, 96.6886585214579, 76.2557694936804, 99.3859329501209, 87.8167732230371, 98.6143278775214, 97.1422370760836, 89.5302362252638, 102.012541282385, 95.6746728983674, 92.9212827843595, 80.5733511283115, 110.815258650354, 94.3724272167383, 78.0815507819584, 98.1699728434189, 89.337630948606, 79.420270718253, 73.8017822677642, 82.4307291008751, 281.049505798542, 89.9583113408351, 78.1173828443897, 80.0554407554392, 140.890871801258, 90.6284269789849, 198.107759151576, 105.233273053885, 64.361509861089, 75.4273968900455, 52.9036306177544, 67.0848290788238, 63.365369364261, 65.6340778386395, 69.4421269564041, 69.0384316104754, 68.1357830091508, 73.0386926444756, 76.0802905034971, 63.6152417886212, 209.821658668398, 106.804398583074, 67.0261459453333, 53.5881527952542, 75.6886101005056, 110.000806121841, 66.1509564037561, 208.10674901506, 80.2499720957318, 60.238836657315, 57.8726082602738, 53.4699329927303, 53.979131920494, 82.8154001761638, 251.84095483237, 66.9850361872562, 49.5380860750937, 83.959014207295, 59.7621825717973, 70.8003788676837, 53.5984168204504, 60.4134509322919, 64.0848024409123, 46.6807636239064, 52.7775154229281, 64.1251961906976, 73.4564394125841, 54.4646314592244, 56.6026690604638, 53.8562751945907, 199.060289138296, 51.6874219274433, 57.1697014141336, 45.3517808673143, 44.9818682696591, 44.819207889498, 139.959967370955, 64.9771449962096, 61.3836190275742, 56.4734282991632, 41.6993098011817, 41.2625897917022, 33.3443066717967, 39.7511126006643, 89.1152333830254, 38.802936210867, 38.508088063708, 80.9701626201254, 47.6095652890183, 44.4102101322394, 34.216750372199, 30.7800539839616, 36.8132358898545, 33.0355600615439, 41.0659758133635, 55.2682373378522, 44.7168965302465, 36.4012642745352, 37.8078591571524, 30.5883383251265, 34.7883939699119, 34.3819267525168, 34.7212482586242, 41.0603304765713, 40.2508194271009, 41.410556108965, 45.0622098586513, 48.265059520965, 35.1316452358418, 33.0495471194085, 47.8516653646306, 37.4806546425079, 33.8451429557258, 35.7314716535276, 87.2554032179604, 43.6151474139755, 28.3154363147185, 40.9631805602377, 29.6017394856952, 23.8164900836277, 21.5398590701403, 31.5307241710779, 32.9875059466015, 28.843245695332, 31.1305964683171, 37.8091035524535, 30.6960755507753, 29.27985102985, 40.7297606206897, 30.9008659453346, 42.0857147853266, 37.4081037332009, 31.9904133783382, 30.6943396247619, 22.7397681159607, 40.4735099966676, 67.2792026423159, 42.3850662851389, 28.4621466951051, 34.3511750443762, 30.2306291557923, 23.0096180551785, 28.2046538433559, 61.5667884276753, 84.6023824643447, 29.8465327964414, 33.7244286564652, 66.6861914175575, 36.5604638015063, 30.9455691863405, 43.0400989079176, 43.9165189778867, 33.8803559103695, 29.4280070819291, 30.637124686461, 37.5314106750468, 35.9468671519298, 32.0081403122383, 40.0717065150384, 37.2307681800758, 50.3895761534056, 42.7137341598674, 36.0273193197186, 35.3863703552704, 32.355544169059, 38.5680045380125, 51.2212053389306, 64.1998493421617, 43.5275706093814, 43.3757480288875, 38.6094425442554, 44.265352975529, 40.8824652815139, 54.1787953888032, 116.99014556246, 46.6023109390243, 48.8538173718766, 54.2198983926995, 42.6200510091021, 44.0149400799243, 45.095233775328, 52.8511411009342, 43.5314192141224, 41.4656137263403, 46.003083705586, 49.4901968432364, 54.0664061732422, 50.3000691233883, 55.8441218971011, 52.923813644719, 51.4337936427881, 49.7654360023983, 59.7527145985988, 68.2415124433826, 58.4265867495966, 54.6819973887182, 58.6312696385341, 59.3735508537523, 52.8019526243383, 53.9959807395006, 52.6351831481401, 56.1004167180901, 42.483355139005, 82.9402300636884, 117.564792793861, 74.9819419396581, 54.4368947544516, 43.3935697277003, 43.8390733658023, 51.7310264300846, 70.9552861042558, 66.3362809787714, 60.5276184760197, 52.5462494737363, 55.0797138216307, 66.5137974200913, 71.4353751420863, 69.8383473596101, 61.4426958600931, 62.6603634508163, 67.1844823222198, 61.1186948219036, 53.4481229164986, 54.8401914918543, 58.9140106255927, 57.8602758070551, 62.5774699431569, 55.925596785429, 56.3849567586041, 58.2112258014905, 94.5861126858526, 82.3473684827716, 72.4931628129786, 94.370946528158, 121.789761040978, 52.1131607006662, 65.8419759104346, 77.7106534304567, 85.7887653760217, 56.8905482399525, 69.9944237703743, 79.9408458764568, 66.2685662843481, 58.4374396116338, 83.7558439842092, 65.0340683586218, 69.2867122896115, 68.0926250218229, 79.7711837632658, 69.4952237882815, 65.7707650869125, 69.5343708563115, 72.243964827364, 69.1127753945227, 65.8318147482964, 89.1276149039015, 122.905686722982, 91.9535983484534, 90.7392320436769, 103.510572157572, 100.928430700934, 68.977823482863, 71.689493122877, 82.6096173944539, 162.783323078996, 97.3185972320902, 65.2812515053492, 90.8229823671898, 117.636460940133, 69.832817597758, 71.1570963617204, 82.2114641235986, 91.7671298045477, 68.7950689077182, 80.668603180903, 76.1018252539883, 85.3363114168629, 75.192764306387, 85.0137320126416, 67.4415661701182, 55.1754436548681, 59.8496923429121, 74.931017410846, 92.6263642069122, 91.3092514867263, 77.1017581694652, 79.5167543137315, 76.5494536112891, 114.06399259664, 87.6614668245462, 79.2728454589279, 130.305380167383, 86.9960412061566, 93.6941788583519, 146.600046865328, 85.1705283034642, 76.8019526932307, 60.4847545253357, 74.5871511493285, 78.9362637612066, 83.8741015537819, 89.9015223420159, 83.2879051419642, 84.124449549709, 123.504952261337, 82.9948685744542, 79.3668172257139, 91.6903881397161, 115.258712562356, 82.3826751219276, 72.6217036215139, 74.1352290014547, 87.5863141179019, 80.4099626274636, 72.5404252155579, 83.4093778406827, 83.4556870895491, 75.0555181268626, 68.5500805540038, 73.6241534406842, 73.1686759729216, 79.860072193518, 117.521754232896, 134.379138116073, 160.509901365917, 93.606144709963, 88.9198112286992, 133.307223620494, 86.6487554382647, 79.643681821175, 70.805175676392, 78.9752518651623, 81.5469494460021, 74.1070369727377, 81.7303613480822, 95.6634261113067, 95.2065394731418, 84.3854562196089, 84.4256654341397, 82.5436693401276, 101.560124758988, 69.7501158163018, 70.435246587501, 83.7222967858438, 80.861076133351, 85.6829667842853, 100.62847308994, 128.719424333727, 102.033967880824, 85.4735292026461, 94.9434503876483, 91.7631796453511, 70.881451757685, 114.596615631702, 164.881713370427, 90.3961049519779, 82.4143649867147, 94.9083228564386, 91.5511042807811, 108.860284278357, 95.0870216528968, 81.5717384697201, 74.6985572152535, 74.5316293826597, 74.6029294939882, 119.016087081702, 92.0218153187071, 73.2494471775639, 75.9046254554354, 64.4309018035714, 96.7567607033302, 92.0075275437374, 78.2769369943612, 94.8867660311295, 103.802159021784, 96.5531059462506, 124.476089581663, 175.165726444125, 246.976220437141, 212.333286506742, 145.325401954925, 164.967908852104, 147.459270658959, 149.007415295692, 141.567055851717, 97.2742195940164, 102.670018718045, 157.804211983844, 128.193833282383, 103.03189375561, 82.7597731574782, 90.575186402986, 75.7765115247563, 160.810159954372, 149.842037286281, 100.085995924277, 89.8287831570543, 82.0460848317489, 93.4677792111116, 99.5497433509267, 93.3758079199407, 74.2254155822484, 111.261165815583, 155.442131218233, 128.818011105231, 99.9448372438939, 100.497403345172, 89.8382975480414, 85.2206255190478, 91.071070228441, 176.137758729237, 261.411390699073, 138.610645317898, 136.196629623675, 183.030064205081, 101.454434972414, 124.308419728348, 151.116675666896, 100.367201168859, 122.41164697955, 100.897557006675, 97.8451872143193, 89.0314168091489, 87.3579284907799, 99.9779220152446, 108.467517669172, 104.576737844941, 99.5736311838488, 167.884917688822, 141.398693230314, 101.483647672724, 99.8429863147911, 89.390752907791, 145.21333558023, 161.958615806422, 119.583823979867, 113.384810773428, 98.2479260917514, 95.5259518623867, 101.794839163905, 111.666377754061, 114.097558076903, 104.740543484917, 121.009009825395, 262.129288842023, 229.246428092769, 222.382485859361, 162.67358556074, 118.472234088804, 116.557903704896, 120.349718846678, 126.48475168978, 110.324018105872, 109.887024290011, 113.966712261761, 111.871058076754, 98.2971415623933, 120.334165324959, 144.658273052503, 136.600485063976, 122.86600403394, 113.036234264395, 110.973340012398, 104.490555536556, 121.40409389033, 108.197855034614, 156.664479362701, 186.388054963336, 134.34003933855, 129.078172522462, 156.489182555618, 128.128952361013, 190.850893761138, 184.690604369735, 218.39969066063, 139.667358940468, 216.021709377502, 178.117208887776, 162.348352667725, 147.174004198361, 129.826097847193, 133.242469523908, 130.610837709948, 116.104601055353, 123.153144519927, 138.266111067845, 123.424011810509, 123.50825939113, 104.74408221712, 120.945768201164, 142.160330298427, 133.228260556004, 134.551145788784, 133.710380954126, 130.062274481108, 154.061428093942, 137.944775002099, 135.468533532708, 130.339448431544, 193.549999517367, 159.220905215167, 226.12536880278, 264.698658026542, 237.303005410189, 221.459028146316, 139.448411701626, 130.09035110654, 134.626212614325, 136.265822233779, 131.512560416179, 130.502396343358, 136.933005634664, 134.264612125241, 134.367154380468, 138.152113366598, 140.362994275447, 132.415687060096, 132.431921808376, 224.823380705416, 183.622739047414, 133.432193004127, 132.429142574398, 144.842589517401, 137.302586490114, 136.035863640529, 156.447498983632, 158.856449095027, 160.492352207309, 147.227330364468, 201.031248422901, 202.961216649012, 285.648683298004, 180.838140977572, 166.439017152128, 302.632210542787, 249.132896273597, 274.582073042518, 197.697577786305, 205.260123545354, 180.839957978553, 140.984941463375, 168.062016848274, 157.578038569063, 150.930891648942, 180.272126988995, 163.026069872961, 147.164615039078, 165.578664692876, 171.046167660881, 161.461773670803, 159.271746347748, 120.458223406335, 200.888732474226, 219.945160623213, 208.84340789061, 170.194014081088, 169.147140824327, 164.220322479761, 154.249399602325, 168.112709319065, 184.439101684943, 151.706065549893],[649.896866805642, 626.315966990429, 619.996834697467, 532.719640743341, 476.126756162556, 346.940445765832, 325.825005367434, 351.422851161403, 328.496881185802, 269.743226427121, 264.354506752715, 324.161327429802, 348.623879159123, 481.178511193175, 401.092649369364, 457.34773395151, 611.683640308042, 441.269393949353, 588.880260648828, 529.668926267427, 520.484282071185, 577.46861089302, 693.559058685019, 713.248907847464, 659.871346026159, 649.059473736235, 634.083907022346, 681.692915287318, 787.918909616357, 898.721814029355, 1142.69650217287, 1186.56924005696, 1166.0237380996, 1039.82716589332, 551.535846767277, 497.429695178415, 512.586068821656, 493.104492737261, 494.471040880221, 459.188970978303, 444.921400509057, 448.75868707215, 356.330615174686, 520.73696638558, 650.706318742064, 661.189459501559, 561.670762740854, 471.547211060643, 534.17726265028, 583.566155239329, 578.154818517327, 528.073335873437, 532.691267400882, 506.880866999129, 439.017083163303, 432.34493271311, 421.722648509882, 447.578416674352, 499.589993605174, 587.279592454048, 886.31861559253, 926.464511732935, 815.053328346264, 609.849649385685, 663.157355809322, 657.005734516932, 628.186810653584, 621.494043303143, 580.297741400993, 496.461591107379, 503.165931623932, 477.509002360125, 457.297043534951, 512.888855976593, 550.852145865075, 531.52812167117, 429.328069593349, 426.345437767419, 365.635292545746, 343.209591657382, 347.504972973784, 329.323829385815, 339.268940043434, 306.446961696251, 306.735668006064, 358.015963720396, 316.159750237736, 284.750956897232, 194.842884133657, 282.505819694792, 451.372745392822, 434.451683105615, 337.194272821504, 308.143658170533, 244.372478642929, 233.644252656914, 230.342575679224, 212.854901028125, 134.934634878679, 169.889303183404, 175.288387628845, 157.71975925745, 159.78012782947, 148.444404186978, 147.894080700544, 134.744026333297, 133.024947419593, 120.343409134021, 121.249628167126, 114.522857869747, 108.785442729722, 112.038189247586, 103.989167163627, 103.391794643883, 97.3152211759043, 89.1622280387772, 84.4251393117706, 87.5726173246188, 105.755256906839, 129.652844837787, 157.287489908742, 143.143817892471, 120.561707319348, 83.7244713269835, 91.6925096338481, 104.014283592439, 94.0927552982301, 90.5252126669824, 88.72515953062, 83.0299071787389, 80.2776885402291, 79.1324448264234, 75.2830344988605, 70.1250889022034, 103.188007478601, 115.428099062161, 103.994226044646, 85.6854140395307, 81.6425875718915, 83.2402918199606, 104.300893986204, 99.5656518909432, 94.9658212546971, 90.5084092345091, 84.8970327720677, 86.666629692597, 80.7371225724903, 76.6979176649849, 75.7052106195622, 75.1224563866446, 77.8984824869762, 76.0908154575395, 81.4800400395938, 92.306629905017, 66.59693421544, 71.1881575233324, 77.5050472555808, 71.2967336042586, 61.9495159980811, 92.9764958064684, 88.0204430759795, 81.5494141925423, 75.028549827979, 75.3215464550416, 72.1048806425871, 72.2447081779987, 67.6885076819445, 62.2443290895433, 60.2061308028748, 59.3899683297867, 60.1102911693255, 71.3567288158562, 68.998178334131, 69.8627980565541, 67.6524085359786, 64.7128144649247, 58.8437252346877, 61.9284905851115, 67.3315996451682, 68.2173376812372, 68.1041936676136, 64.1836780247283, 44.9203354394998, 43.6572212365812, 51.6271890800719, 59.5141678002516, 44.9403708534117, 52.5969238486354, 56.3579033162582, 54.6834017082257, 50.1636253504316, 58.4977862881317, 67.7860254691484, 68.3486929327174, 63.3889077904474, 54.1088086944348, 54.6751959610109, 54.9152345784563, 55.2441532342502, 36.4525391217814, 39.5699852849845, 41.6073292964952, 45.6388646802899, 50.6522733976691, 52.7327917951763, 48.3165902751057, 42.8577164681667, 31.4018824971198, 40.7074842988231, 56.8025634770644, 53.0677194148809, 46.1056236652808, 45.2204100247294, 44.2346628260737, 40.0774163127981, 48.111210318201, 50.6144072090746, 50.2244097629444, 46.4464437591539, 43.4917240007944, 42.5462257478836, 39.2270990212976, 39.2602174191932, 39.0523269152487, 38.3814678434146, 36.6419160922857, 31.8495613598522, 30.3511224472314, 32.6540330594229, 32.2761602561718, 30.35857394572, 29.9703062487788, 28.0539097323166, 29.1134498998319, 28.120043190695, 29.1433675401388, 28.1132492913007, 24.9831901416215, 21.337987606784, 21.7493086813703, 25.8671820233427, 26.1008337109243, 24.8412657451294, 25.5062802106357, 24.7169904559131, 24.1779790407838, 21.38736244891, 18.7815898217012, 22.7172275275955, 20.8102343050616, 21.7535408537358, 21.0141097189485, 19.6071119992557, 21.0618207087832, 17.9186315637454, 17.1775213036963, 18.171399372112, 20.0720340335936, 19.3647850549647, 19.8745630360221, 18.2541893444852, 19.1098403583845, 17.8708909846635, 17.5869365410477, 15.382035452886, 13.330518817866, 16.9659533551211, 17.5469904714979, 17.5698177781979, 19.1397657104994, 18.1408184677703, 18.4766632400593, 17.8564743995119, 17.9179440278087, 17.8490603048974, 16.3780584470661, 13.9877567535805, 17.9539248286018, 18.4561859899867, 16.122296607694, 15.9922804539297, 16.350919018541, 15.946334744594, 16.7692841098334, 17.7239633157305, 17.054632981905, 13.2951618510328, 15.8448316575845, 17.857114864602, 17.9254022220255, 14.8732156219842, 16.4850071089243, 16.6314496594218, 17.2238027956785, 16.6364483682369, 17.470210365209, 17.2681290924427, 14.2972695244406, 17.0087927021265, 19.3523581645144, 20.0962510006597, 20.2575085416332, 21.2635634371119, 21.6347637992636, 21.9293010766681, 20.4977258034276, 21.2847876998435, 23.2715025181118, 21.6790727416478, 21.9650710428671, 19.8030057328238, 21.9721783029801, 22.8351292761768, 23.8394867940031, 25.9913134119642, 26.6005392401844, 25.9726058488526, 25.84207509182, 27.2296107259255, 27.1300722458226, 26.3662370417818, 26.2843501172677, 26.8628506014017, 27.4765670203398, 26.9769756082083, 29.5695147287204, 30.299085760582, 34.4993261359054, 32.3544266598823, 35.5498304234558, 40.3873547102505, 37.884624233314, 40.445369059123, 39.1413963098365, 37.7306865574913, 39.1039817176931, 41.3679664590805, 43.1260853423227, 42.3210832402868, 41.3957859286161, 44.3139656377768, 34.4996436705124, 42.4031563303727, 48.7711474050572, 52.1609318947339, 58.490712836121, 53.2694059749485, 59.7900449209664, 56.3954955535886, 58.7046364772247, 61.2276212282626, 66.6497658475995, 63.677648739756, 69.5467225852898, 59.3492744240925, 62.035194917827, 67.5596236607206, 74.3486097322045, 62.1691078259562, 87.2501982915292, 111.3439988004, 121.159236282315, 94.34747733541, 89.8988273153029, 97.4954899250912, 115.944488670355, 126.54212990834, 120.88650265605, 129.780145407852, 133.166923368368, 137.037574773948, 135.421885080975, 137.445370102731, 152.594663820701, 173.474043350445, 226.75037421948, 200.682130783046, 179.317995037747, 163.549190439954, 178.573627850057, 181.527132742078, 178.916098510895, 201.500457536718, 222.036552591274, 223.887574510404, 226.951194796829, 258.106429966189, 255.709505469034, 292.373785144311, 361.049856541013, 347.691915970112, 292.245111278836, 360.915182745968, 361.65807427707, 260.123668357762, 146.004685158809, 162.588689007167, 203.930666168788, 212.528098125268, 208.480985299077, 214.245471554002, 223.792504597698, 233.549520358689, 258.504760514413, 313.101184339122, 334.9169723543, 332.63624321486, 328.708954937885, 324.797314221169, 321.43802137468, 369.604396173666, 332.732456131742, 355.676028980506, 357.533549283352, 339.166004888101, 343.947566422664, 300.68096840771, 373.924411418292, 439.091282181087, 486.222775729765, 464.579633156543, 355.149293974902, 317.486685275783, 307.401283472284, 319.793176851031, 329.667851849505, 342.1062496815, 332.851388816774, 324.196341364109, 328.622940808758, 324.006615035172, 342.450221331522, 359.246825238425, 374.5936570594, 433.417333184919, 398.965014414807, 365.70590870418, 350.583869703026, 419.702901953634, 369.955355639527, 250.916427456516, 232.349858478803, 212.202056338804, 219.506630096931, 226.477815600536, 185.454350665338, 176.245028483504, 262.197701668149, 281.240793018816, 300.352362363808, 369.391038015757, 362.452223812086, 313.925610629857, 210.09795358613, 274.260699223803, 305.98068525715, 310.734190598656, 309.03724799263, 329.018428074579, 331.803240972835, 309.03599900087, 322.920521129333, 340.916315376372, 345.160651656549, 373.875213641621, 423.737504889908, 379.030730047891, 375.391195505543, 361.107588127478, 394.73125047605, 392.631083436374, 418.565141570524, 395.112745480197, 383.331603798577, 401.402089708707, 408.651862000755, 384.095923922315, 421.348527690898, 483.650678688075, 577.747554012823, 644.941260108111, 627.088709243716, 571.665056231043, 504.576340687741, 284.188342558508, 327.629598279796, 285.67931640471, 318.290864615542, 355.341459299088, 326.571741608507, 383.202584309112, 371.052407678711, 415.848234585633, 426.566493687964, 418.3686780611, 445.232117966949, 418.807194166274, 327.338142014525, 347.786379034408, 419.036426417504, 432.81856780002, 470.202003510371, 471.75731684221, 466.700620886715, 492.926148344568, 492.141230591136, 487.19816854112, 476.170732299234, 444.997884607516, 378.418184124928, 424.136875556943, 408.412227279687, 374.742932243899, 381.332303865197, 281.100505196064, 343.559395008362, 406.108723096213, 387.956885886858, 388.763605611664, 411.530268307561, 399.010931038302, 412.714902220932, 407.239391898381, 397.268249311133, 411.994062207919, 361.231962186564, 462.018368267691, 445.428313026718, 440.225222088226, 456.10831405207, 452.043178106864, 419.299073060199, 457.707514337005, 449.935018260647, 444.138250287401, 478.982346969365, 480.96188043609, 530.197950768178, 544.392318445558, 624.06132330297, 617.01992445313, 460.441213075781, 357.786305541291, 415.892489259013, 405.105867438495, 450.720839107561, 443.64332515337, 435.920016772161, 387.925368558833, 319.334131546833, 419.9005006208, 408.531010560748, 408.739095742299, 418.817465712668, 476.590542433573, 505.642103075662, 473.434466223263, 490.845167062, 463.905313203441, 532.202182152294, 535.433317424968, 537.341264211411, 547.650241143595, 580.06063858613, 599.848687986802, 647.736202094191, 645.067742715186, 439.71914353481, 400.567540874049, 638.459656675339, 888.395802080392, 861.389669719915, 841.674603072415, 701.03992845036, 604.908978738448, 469.985926030859, 437.701407488019, 401.231529264499, 379.671682339284, 407.869997636225, 449.076110650341, 442.157024409021, 510.757688970342, 496.474881172894, 509.778107282047, 568.364717558345, 538.441693080191, 516.974317335753, 451.152410711315, 565.841301359178, 562.975358344738, 585.371923032813, 635.579329652624, 647.268861972595, 605.43943233866, 636.885287227163, 630.273341756504, 655.72707240632, 727.103242747744, 828.767496147433, 914.081626656224, 855.197567335919, 573.997751148278, 371.45448556434, 386.542673961321, 368.549161078308, 366.202127316991, 421.522611533069, 400.058886113027, 416.206119415872, 405.578037302601, 388.725156572256, 380.163543090522, 484.942953317272, 543.938074333924, 550.951479026191, 570.088783166456, 538.662702806185, 461.532593835022, 416.644932709953, 506.745672361432, 415.852467996708, 585.96193694619, 563.168192800705, 541.956913288972, 561.677769431157, 572.864985531568, 460.994746899631, 554.019787923158, 670.463571941806, 756.159214180874, 691.256158123462, 678.775193060987, 613.136478186253, 571.6678755613, 349.77273496566, 279.527714575815, 309.184837407046, 283.994145522457, 269.306158918558, 298.450992965879, 302.273862375217, 324.909711927358, 320.912256950147, 307.09393741616, 344.041218797959, 381.067035125992, 330.854145088292, 340.687199488643, 367.47353652471, 380.184519688168, 382.837671185103, 403.422412116616, 407.788595349009, 382.933588376065, 424.431439912382, 397.728828823654, 470.583188243501, 461.947651070115, 480.081903233235, 484.420105113609, 633.305695443443, 576.550075492971, 549.766754526977, 545.870476654425, 538.446256439737, 556.294489801541, 586.393212014945, 576.199774665481, 628.477347762874, 625.66429905935, 630.194536856455, 667.733286595902, 724.51131965992, 849.339808785198, 611.644781485878, 691.722992062922, 682.548131176081, 786.03580267559, 722.106177109917, 729.351998123286, 744.762845279578, 852.854407026186, 887.179512097723, 916.339292186918, 872.957377773098, 767.5957250311, 612.990913817448, 495.315983839648, 565.120777491524, 726.207622300096, 706.36322948629, 620.383687797302, 590.195678450636, 579.601996112683, 538.289483202444, 500.623118151394, 652.354439099, 674.309987376851, 633.040855255735, 625.71518469639, 644.086124862413, 713.789579568186, 752.460852613183, 953.397965584451, 970.275163013991, 909.772727139361, 839.199767543942, 819.517670995387, 520.91311584174, 334.655814539146, 414.338687800523, 505.307604295747, 514.639394854986, 516.239390617684, 498.984589079295, 516.285505333214, 539.201810631032],[872003.476366688, 883791.74528526, 885500.241669532, 876852.232599362, 896512.949493316, 879141.104023212, 866207.73054807, 880921.411639094, 873088.115181759, 742494.040604161, 729076.633774644, 890433.76359857, 897495.461544806, 903776.302307433, 620296.919345029, 656628.892445069, 817835.820413228, 703788.317784263, 923733.51900481, 840302.389091418, 823876.028771928, 873752.682358253, 939477.331776167, 931524.824248672, 942284.675645171, 935927.510203193, 945066.747659581, 944568.181843994, 940668.220873266, 951816.285216192, 976242.744161135, 991119.934511835, 984638.142537098, 990008.357705408, 1009106.52463645, 988902.267426052, 985398.738620608, 989342.255619205, 986511.785726598, 989759.69363554, 977749.791342362, 1002191.61977018, 759507.261171319, 867818.936671786, 1007321.2707372, 1009370.33114576, 888856.797942616, 879376.090965496, 1004480.15129843, 1020932.4717902, 1000527.54082323, 994611.694367207, 1015779.83649749, 1006064.44194635, 999964.000283056, 997159.02878473, 1014298.12019978, 1006810.50055643, 999520.472919567, 1013287.74915025, 1053820.04055564, 1059174.7978973, 936185.784718668, 801942.448085496, 1063929.22150253, 1036819.92168487, 1023424.93574506, 1044810.80326281, 1038208.61369482, 1026374.55562762, 1016853.52954261, 1031852.84895637, 1024559.56675418, 1028692.96265381, 1040350.19456305, 1049901.91525123, 1034686.83319437, 1028857.75318969, 1024710.60492196, 1038894.88137194, 1017432.61741948, 1012627.03519775, 916551.474429226, 798888.786783088, 924053.574922594, 1044445.63984334, 1055522.17221477, 1034551.79431527, 780895.025030785, 919493.16207614, 1083013.1608144, 1068449.89218394, 1064829.30319975, 1055408.78527382, 1064253.63050568, 1038808.01806306, 1037973.22410888, 1042026.66970274, 797231.772406332, 900595.391853488, 1015184.07116558, 1018083.82258069, 1015453.82950752, 1001727.22159191, 1006758.49488808, 1012515.39712926, 1012328.72674393, 993952.277475509, 996252.302015871, 1002240.99058638, 978192.185979416, 974600.52033042, 978949.578869858, 976862.115861085, 965488.839226712, 947190.844850005, 961316.74008085, 950013.166484559, 936596.011085032, 945539.732674742, 967217.972813549, 965127.187675022, 943791.055347765, 726971.176335755, 844275.267888207, 929203.282235201, 915775.239812287, 926306.654284447, 910461.295718016, 901561.036566164, 888186.489018181, 903291.273447821, 887201.991823416, 862121.733400736, 866384.270363239, 886773.31307881, 873544.314830068, 858557.171329947, 853862.289707514, 863506.938205195, 841199.262604416, 825081.098571904, 839260.097999495, 833258.817159247, 818714.441609584, 812457.300013175, 823873.519481038, 813905.68185097, 794783.796361479, 796915.304162025, 818758.77998124, 813587.676724761, 799787.519170438, 792817.332437369, 616840.208476471, 696546.037362217, 768879.693103911, 782211.174381132, 630840.119640073, 756859.163104241, 743514.944986578, 752808.82608699, 740475.71010948, 729067.470421675, 692902.156576879, 735550.758761551, 727158.149140616, 710561.640692111, 711412.684717934, 719128.493931611, 701474.106817128, 686963.962087589, 700938.433014651, 687172.531880824, 680755.398387641, 669543.157449136, 680601.548536291, 668871.734308679, 655984.449633994, 660013.743460168, 669885.692221525, 662253.005999939, 508021.436518216, 493397.787393902, 588667.558486169, 630029.078871737, 485942.890325834, 568073.03885791, 625671.529322771, 622972.550045331, 610303.710905061, 624437.224514227, 601870.767005385, 597172.709246123, 596900.19123178, 605508.388836815, 601353.919961547, 586404.06252562, 592361.919712412, 452648.190416547, 506061.733387021, 568700.354803171, 574770.82531597, 571956.82217507, 566507.52006935, 559839.619264667, 562620.069299567, 427334.051553014, 481254.574737353, 547329.269133125, 554491.651185747, 553130.478548516, 543629.964925674, 541472.503508555, 547677.77063646, 527207.538422984, 532781.290487149, 530289.218286938, 524596.653060067, 522162.710277005, 511078.767645911, 527576.002994722, 505803.866157401, 508476.355242209, 506714.007400303, 513792.222279339, 500722.148471787, 499764.071597334, 497815.653017546, 504111.519994748, 491066.0375799, 481874.251111484, 496506.820437518, 484316.142212913, 483394.298196116, 476840.63274037, 484579.394983384, 422661.159305492, 367033.036358289, 367068.70096543, 422709.340663562, 486708.701039806, 468581.515328253, 474824.030793994, 470330.752941613, 464595.25921482, 410790.275534193, 366359.286109781, 458579.297093416, 459290.397729699, 448856.418428537, 464334.029780513, 448417.996381028, 445854.553773854, 402990.509553118, 352509.333139923, 402608.182305679, 447867.247953575, 449838.171723231, 452015.700672516, 444285.297814155, 435896.526933582, 441158.10158656, 443287.421873798, 381555.556022054, 334061.963046965, 437181.283461504, 422092.865533961, 420797.581037487, 433333.384701836, 441017.181548728, 437556.073729888, 427781.542362679, 434935.140998, 434260.168202327, 386705.319214517, 325374.277405114, 437848.149996091, 428625.894763596, 425790.635588414, 417674.5754685, 434122.620884537, 424703.62057649, 416933.337442245, 423393.602955743, 426951.042708313, 331058.631706437, 368303.718714495, 419773.196051743, 424213.020532293, 368939.050527746, 410469.698572302, 419492.927716914, 419149.298492239, 420510.758195527, 418610.347768907, 426784.835762272, 327890.83152579, 420519.326366165, 421705.085074104, 431336.026179596, 436865.5873298, 428236.474759122, 426175.543857255, 438520.047849806, 432927.548402035, 434669.379559046, 439836.874964225, 432755.06171701, 434146.487362855, 425501.376263079, 441580.809913167, 433141.502839778, 432295.673275472, 437769.850451477, 446022.482132295, 438095.367860586, 441148.840853119, 444453.607624411, 445662.056402497, 440463.465417404, 439649.194380622, 454725.461946347, 446526.606670053, 452598.469713232, 447433.375187026, 462012.815967748, 449421.818502195, 455509.150544559, 457326.67355212, 473548.738546759, 473680.980627146, 461952.040192674, 475506.162640381, 483195.453103697, 466212.825470128, 469778.813851024, 481151.292886686, 479597.812525888, 478697.739152425, 474582.153850446, 374241.547947858, 427254.68411218, 479610.049554189, 485002.963941301, 488506.629862534, 494093.477765876, 482897.368029195, 494024.818131351, 503175.786394962, 489765.581935216, 494252.863776888, 502868.566808276, 497284.239424224, 474924.27118177, 496514.995849994, 502289.93218856, 502667.06996078, 380937.624193846, 454221.98362424, 512172.606057557, 520388.14818388, 513299.604387467, 400471.225708484, 406799.11110371, 506122.598764778, 510937.392541317, 524269.166616679, 520945.537323559, 515053.288494417, 519561.520337643, 519016.192865518, 518704.089844028, 514132.364278756, 523841.624548019, 534090.054606037, 524796.24109298, 525732.775282399, 528638.371386223, 537942.403470138, 516880.516550953, 520832.144417996, 533314.422944523, 533412.661168289, 530999.096230286, 527399.941932847, 546968.992458554, 532028.293591881, 533484.879027602, 541264.764378367, 491377.665868598, 431359.917543054, 550241.78545133, 555879.402089345, 528309.813285017, 421938.236298332, 486117.81963124, 567969.287912718, 560506.217123465, 553537.441146863, 553445.483650809, 564717.956084121, 558419.400368231, 558790.944459185, 565372.20904013, 578942.551930205, 571924.108714078, 569145.07582313, 579147.539102819, 577352.591001458, 568163.117522035, 567969.274045574, 580748.873924834, 579477.117342214, 574319.469545301, 512399.209450347, 449992.561462991, 509119.536767507, 579273.011100141, 577220.971947585, 607493.830740692, 599873.855457231, 594391.335541599, 598168.061466751, 608064.677300585, 591753.592089741, 592059.809867988, 609603.631482938, 595584.970369707, 599498.903946345, 593233.7597352, 600888.50625064, 603420.981238077, 597630.663007531, 604936.998025757, 547933.569594426, 475211.974984134, 460685.386364279, 603188.691507702, 622382.114643775, 603128.194180503, 613433.692747185, 609612.657572898, 612109.364772239, 612908.459385962, 471048.710326343, 479010.966723991, 613050.622038065, 607663.244270272, 619004.323698314, 633403.160921819, 633276.796927758, 616478.839617393, 479523.067111458, 563959.666603137, 610334.403105847, 622183.634417297, 630163.827853794, 624072.981324205, 625400.157092011, 614804.596261336, 633025.572667244, 630248.297054417, 619141.537564554, 627758.45046139, 642308.100878773, 637159.958318683, 630730.493396326, 635128.748782667, 644355.847070118, 628333.489778209, 629584.629101427, 638313.30115164, 638310.977363195, 604038.668207134, 599282.936840524, 647608.615568119, 643757.308936224, 632124.454352442, 652097.909072664, 658591.462372169, 665346.992395793, 654382.975833767, 654921.633069545, 513539.642025519, 579867.165665978, 497823.629142373, 589836.256493472, 648924.625531117, 652427.353068621, 653088.911692818, 663640.896476091, 664293.534769407, 650035.775028712, 666479.810547501, 668150.927173891, 659680.398203827, 543851.437281406, 555038.456852348, 677183.01241139, 657199.907201279, 658831.384441747, 673545.471161772, 665868.069714442, 675400.732040138, 663289.003899921, 683215.20710853, 673705.568658445, 587223.022869998, 522270.12176002, 685645.364997588, 696337.391403707, 682590.073128698, 691218.997252465, 539879.908117717, 604687.282040384, 680720.346676233, 692313.44422323, 689648.103395438, 686388.175967534, 680297.443456847, 693058.9994471, 690732.893272328, 600604.929329959, 604377.886818188, 535951.412961446, 695546.582178405, 689560.671982897, 688550.684578504, 707934.282420153, 690264.143525915, 687692.051559931, 697893.8305999, 691782.742738006, 691241.315623252, 678357.123897632, 705076.022986895, 703018.838860816, 680561.629561071, 702089.172430933, 635162.279950341, 552730.265174326, 625569.879075569, 710874.938517391, 723222.466734932, 713972.781777833, 697446.333404838, 726014.83057934, 632029.201020142, 550531.978829436, 704356.207673324, 719497.116703914, 712597.124411901, 709529.939526942, 718738.337741354, 734343.671323686, 722306.896399016, 728045.510546098, 724090.501925897, 736411.642224608, 717946.842043111, 718619.390561722, 732772.930073745, 734334.557869894, 731213.14007013, 730250.166540208, 754020.45109351, 565867.459089062, 565260.452010941, 749407.587948628, 761368.864924739, 766087.638947156, 748465.052118496, 746878.515488588, 774856.097786112, 748050.458554187, 757472.592381418, 761643.503110196, 759265.655218172, 759078.553479847, 767239.112509949, 768799.535431513, 770026.049277948, 759583.620057608, 769118.577646911, 777995.884947297, 778875.968661275, 770629.880994176, 605304.490646702, 696393.281764565, 771003.577575207, 771056.362799165, 788610.900814048, 785920.410136544, 781563.901608895, 774262.442812585, 796706.344802707, 788770.378767116, 777224.60402204, 791464.906509714, 804006.052429569, 804255.343507062, 806710.594772178, 800069.546638203, 821768.926142742, 798870.491079916, 794336.130628299, 818702.595067021, 817355.304100524, 802628.058220415, 806420.5958457, 737397.397190197, 653115.017177519, 803001.610927588, 817159.518270436, 825788.367981026, 818697.062694727, 815181.165116612, 725259.12750745, 645957.176181515, 735994.888288829, 636462.771716841, 839365.01493708, 833085.728085272, 835532.944561609, 826055.747810066, 831930.834303215, 640604.693196971, 720498.337387536, 776293.644439169, 806389.839578234, 754994.890381505, 836946.701805939, 838729.475222257, 851352.519954239, 844238.875874848, 835482.99827928, 847005.25047353, 848550.666583638, 838242.454686914, 842156.130005043, 858296.051617322, 839738.585590241, 847125.790948857, 650805.044292771, 768448.191352999, 867497.581254258, 849204.955989484, 862881.206810509, 868907.521495602, 849496.571375834, 856453.01738937, 864241.673766152, 870952.964255542, 861950.56978403, 850488.369575726, 884934.754214601, 870363.029663123, 857479.027350991, 779731.24654433, 688519.452369862, 898613.01914953, 878509.751323364, 889574.343752028, 899523.166262008, 881502.2954175, 875110.162054863, 890983.983048262, 894167.667990305, 893499.568293715, 881286.513797554, 899062.059624098, 894794.578130566, 889208.768923425, 901400.921864399, 705574.476969965, 804355.39301534, 902120.561393076, 907597.016007653, 918486.16355008, 894914.546847989, 896244.988312447, 922883.814283852, 921110.694924694, 919730.868137024, 907197.585991741, 926648.262362167, 923191.548536312, 914110.693793987, 928912.972950086, 958674.494316983, 947909.152529381, 941570.335774216, 935954.537509363, 962751.192594188, 833267.457226879, 722040.985616275, 943734.615765895, 947866.423381855, 940145.328768697, 935021.217852022, 957030.539053229, 941984.752937932, 940492.012152103, 963202.809019046, 975124.911105217, 968956.088607085, 949010.545414952, 964821.818352125, 870833.738588535, 771261.187891105, 866897.740610658, 982088.442271648, 982114.427503374, 973449.333240259, 964528.538846109, 993370.576355381, 874063.944143175],[923776.648835276, 939152.811767694, 937040.755226542, 927716.256015452, 942472.723268017, 931400.465356151, 918849.719013438, 933784.371333841, 924629.080065275, 786592.396890077, 773398.969939593, 941137.031317448, 949261.961180886, 959611.524018585, 709528.903074131, 714105.816948358, 867915.295540605, 747030.183040465, 866310.457244683, 776132.065205708, 875620.975015239, 928312.068602902, 996083.885077934, 987960.094017674, 998896.144538321, 992875.987360141, 1000058.36118632, 1000855.77764752, 999085.657376974, 1009561.52102363, 1033467.65827414, 1049440.37985386, 1043335.91721465, 1049281.73268647, 1066626.85035587, 1049500.48322409, 1046189.75448731, 1046778.0690634, 1042708.92691037, 1050098.2403313, 1037329.84488103, 1062515.20449815, 805302.833936315, 922910.253695854, 1069640.29357893, 1070891.11393297, 943804.491291935, 934128.736945284, 1065021.54055418, 1080725.26807406, 1062539.34041198, 1056885.61066159, 1077012.94908328, 1067797.76414912, 1061292.19693669, 1059515.17782942, 1074539.41808513, 1068505.64888749, 1062821.05476636, 1076245.11301207, 1117444.33659022, 1122695.00963872, 994010.588124089, 852892.972090886, 1125767.59965624, 1100842.15750403, 1087960.45482827, 1107937.7549018, 1101899.44126727, 1089353.13673096, 1080308.10277693, 1092828.09197009, 1086612.46980902, 1092325.02136014, 1106143.25941554, 1113506.37565074, 1098096.01412873, 1092509.26032933, 1088129.40828376, 1099610.06393739, 1079255.04276387, 1076430.02848004, 971654.168846305, 847966.425448505, 980891.213963754, 1109359.01900154, 1118265.44357104, 1097353.6550337, 830361.172269993, 975961.240194619, 1143443.7309104, 1132983.50343992, 1129466.1454223, 1119570.27716091, 1124535.87626248, 1101804.46499766, 1101777.74537303, 1103939.08863946, 844909.184073708, 955879.323253461, 1077429.47483438, 1077105.27321754, 1074869.35292834, 1063564.78499583, 1067677.61359701, 1072242.56749738, 1072744.18351308, 1054401.44985548, 1055765.76076516, 1059976.18101516, 1035138.3568054, 1036069.69448631, 1036078.22497309, 1033563.35980778, 1022006.09908161, 1003819.37047106, 1014747.66734085, 1004989.25086922, 993738.46756831, 1001525.66255857, 1023069.33736386, 1021095.68428875, 999505.885812038, 769669.300658789, 890228.102574269, 983387.309789343, 969691.817977701, 977030.49089806, 962491.613109485, 953209.705173311, 939480.517163262, 952927.881323969, 936813.515534009, 912913.873433087, 916203.954881199, 936237.993855271, 922933.834971604, 907498.946247685, 801705.637053398, 806424.020773311, 888551.079135283, 872179.067737534, 884748.104361539, 878538.948112861, 863812.410582417, 857768.152377937, 866488.923117901, 857429.523771816, 838998.27996625, 840199.649613362, 861474.322151771, 856956.135477997, 843146.670626386, 834890.853890578, 647525.208986731, 732609.32262813, 809416.638645575, 821495.772538138, 664250.743252994, 795770.855487569, 782634.90001802, 789734.517177329, 777816.143250282, 767327.170842682, 766393.959468278, 772055.637256369, 764461.986434766, 746947.066089896, 746854.772032161, 753057.592940419, 736184.06343089, 721043.966026123, 734766.215122022, 717668.265272761, 713073.485782236, 701834.494705674, 710901.065735933, 699918.26160572, 687730.279647213, 690713.577429929, 699779.591041821, 692358.385032075, 531244.130642435, 516026.295266747, 612469.147350867, 658509.550023563, 507624.605005007, 591334.058883462, 653228.759542354, 650173.083098531, 637207.688526076, 649667.050326874, 627613.078626676, 623641.592385696, 622802.755027029, 630584.800242855, 626745.354393297, 612033.001043975, 616718.316994653, 470590.283369277, 527465.472895475, 592550.454376839, 597329.038095467, 594934.814563009, 588401.822410155, 582417.10194617, 583791.250681939, 444269.680966211, 500920.877435982, 568762.10805271, 575335.896861142, 573808.200978574, 564364.747324269, 561276.654203818, 565876.032443101, 546821.154099808, 552433.626924879, 546827.303549075, 540495.179561432, 540465.573460293, 529683.829755516, 544672.6396165, 523525.633935765, 526637.230137935, 524206.253809739, 530617.318318845, 517756.419406247, 517134.479528675, 514499.828951963, 519766.368774963, 507924.252482704, 498415.616662908, 511852.569038789, 499616.938006761, 498791.904085603, 492187.865481904, 498571.711321399, 435954.640745585, 379746.678065012, 378783.44909503, 435575.036564337, 501219.597659666, 483270.934653484, 488725.912787511, 483246.671334296, 478899.846563024, 423409.135294429, 376469.953746753, 471673.705827668, 472392.925491518, 462047.103713256, 476218.49960765, 461099.369748603, 459038.667766828, 413869.225098227, 361846.996175051, 413726.223161153, 460592.199405303, 459389.411660186, 458259.12477669, 454806.981739604, 446265.206202928, 451838.481439761, 454382.641519351, 394535.241487553, 343102.23150023, 446958.464990173, 432735.377588958, 432064.938439524, 444345.295349692, 450847.392987152, 448332.844272555, 438782.264152778, 445164.5704187, 443525.486736206, 396359.315716646, 333808.408870873, 447718.442602818, 438756.435858743, 436000.093719381, 427868.79202244, 443262.16032005, 434673.090231729, 427302.889349587, 433131.980790054, 436319.953911284, 338571.577430844, 377068.209021182, 428256.626076542, 430944.892087347, 377753.164760735, 420432.556666421, 428682.576219482, 428602.062633957, 430406.087666189, 428408.040016604, 435366.677800142, 335517.876713449, 430561.151257209, 431377.47054712, 440978.342551586, 446628.465319775, 438523.184355034, 435904.720192679, 447479.149634728, 443429.101287859, 445250.594296716, 449577.167640578, 442925.225899962, 444614.776161863, 436109.789496153, 451086.105122866, 443771.179078977, 443616.036025653, 448589.420881764, 456815.433103189, 448355.796951571, 452370.795972962, 455845.805816711, 456217.039480994, 452169.794610107, 451307.36835151, 466159.723222109, 457861.573790021, 464476.77441008, 459662.875304132, 472782.844532368, 461135.118415062, 468080.83170804, 469880.744951557, 486020.394516407, 485836.546184908, 475320.079139633, 488203.268306824, 495072.180775977, 479802.249839433, 483702.250966149, 493848.057961424, 492870.749787697, 492499.383578375, 488682.076369906, 384364.025634184, 439827.249240753, 494373.335066998, 499464.990915914, 502793.330367038, 508533.779773925, 497965.841031607, 508619.081542681, 516376.982261062, 503350.062616465, 507955.098434803, 517501.158638296, 512351.794636009, 514288.862709509, 511280.356954888, 516470.354502673, 517650.781441406, 393229.174047926, 467873.215427577, 527061.55378985, 536037.519784182, 529408.576394329, 412427.067318556, 417882.197988344, 522711.506202579, 527397.223963808, 539460.524284372, 537219.108227642, 531713.260750573, 536523.696632772, 534569.963149765, 535291.864969001, 531620.290255961, 541092.718767647, 551183.453407891, 541956.693622162, 543346.897648155, 544930.426861254, 554084.673664118, 534637.378159194, 538779.998259158, 550433.375569263, 550823.239084661, 548968.111483384, 545707.805726415, 563714.1097976, 549860.974116539, 551775.132165347, 559581.901457726, 507649.084445869, 445760.630331368, 569518.068769187, 574382.270331087, 533430.083752012, 437276.27874201, 503827.816567518, 586745.935694918, 580258.212271246, 572958.971821922, 573510.341984106, 583633.180788713, 578224.560898522, 579693.413129275, 586041.65060634, 599226.549259524, 592208.466987647, 589763.750390883, 599347.276830545, 596694.962819263, 588572.333945228, 588812.608252198, 600681.592024895, 599931.095214127, 595024.735061669, 530650.931508888, 465369.918783888, 528013.358704485, 601451.596191821, 600127.307357451, 628486.154757643, 622130.449616858, 617360.235770367, 619991.792049747, 628817.127915234, 614522.861345354, 615117.837353237, 632432.924878554, 618176.074894828, 622475.669950698, 616731.147255621, 622914.812971561, 626585.430590309, 621504.40039519, 628493.190812248, 568385.093955497, 493491.226284325, 479335.128109432, 626049.150145372, 643458.575353698, 625387.984501156, 636410.913092564, 632892.367020775, 635157.499678588, 636380.671859454, 490331.328337892, 496532.119420674, 637197.325593709, 632680.107536166, 643545.797300738, 657859.12342133, 657638.812275005, 641004.729167673, 498399.799004072, 584457.841775415, 634897.829938512, 647073.905394331, 653816.160441747, 648427.208344016, 649914.44355483, 639797.647497458, 656106.947894994, 655283.392814151, 644579.449376525, 652548.929707564, 667039.691584722, 662342.136867088, 655951.533843574, 658902.021140821, 667559.249203162, 653238.290856353, 654404.929377297, 662857.735000891, 663092.051413135, 660642.473939785, 657378.740754959, 671551.454549933, 669280.623874014, 658724.317388586, 677750.204578032, 684147.115772265, 691577.338978599, 680849.033709115, 681407.819589341, 533033.707932947, 604050.982958049, 518916.834691111, 613143.139558317, 675956.536688878, 679824.768510156, 680726.901505713, 689938.020804302, 691635.339073379, 678260.966245566, 694347.462265266, 695552.27883898, 688082.780120747, 566896.188978162, 578945.834601756, 703342.426769995, 685341.740566937, 687166.909953049, 701974.694630806, 693334.160591973, 703289.191141186, 691213.054637625, 710680.819714381, 701974.076241585, 613026.21467793, 544920.23064323, 714077.020666494, 725529.525878545, 712099.375696363, 720148.197647919, 561239.341400335, 631328.35560227, 710914.111408326, 721356.932276174, 718731.527147311, 712972.10465902, 709844.99606732, 721054.193490341, 720084.801431542, 627587.44547152, 630881.473804586, 558471.373268028, 725113.062654112, 719278.262964512, 718016.794514688, 734453.773363449, 718644.375082023, 716907.566756218, 726618.810114414, 720517.170225348, 720165.44134676, 708185.732851146, 733868.274316065, 732976.001373184, 711232.814749257, 732102.05237061, 661890.824346445, 576656.033805843, 653435.218518189, 741788.683152659, 751651.590303352, 744921.112407153, 730613.31415838, 756645.467710698, 660476.931118648, 576038.890795875, 737402.678787915, 751215.178239099, 745191.033597931, 743435.441057174, 752552.822106424, 767323.983202768, 755250.87667047, 761836.615246088, 757629.874728451, 768535.88799814, 752640.152822511, 752565.683861746, 766074.879169232, 768328.221763483, 765469.517847338, 764891.294520679, 787305.620482835, 593180.270749138, 593091.189193432, 785048.236054391, 796712.790314574, 801328.78156837, 783909.983802403, 782571.583506163, 808923.346030219, 784500.38517983, 794858.92052478, 797649.711526901, 795742.850733345, 795582.170410792, 804462.299701937, 804386.551972653, 806840.462752579, 797760.865375231, 806649.44103926, 814971.309693265, 815915.046786193, 807595.970951821, 633995.556263552, 726959.676039782, 805816.551808103, 808745.866696592, 825354.018659177, 823338.549312091, 819961.059059531, 813298.336798382, 834141.525294882, 827294.760244925, 816921.189585086, 830606.282488375, 842846.123775101, 843634.642562376, 845828.199844851, 839414.573670845, 859826.752956585, 838108.463624313, 835702.255624291, 858297.254617941, 857984.434371143, 842242.51723092, 847138.314763829, 773215.438979473, 686222.838582472, 844558.454508527, 858607.675825854, 865734.250415915, 859602.668118364, 856397.329151487, 760777.227453934, 670969.073492325, 765306.05658256, 661965.761955346, 871383.240412683, 867378.334067055, 873014.160200855, 865713.990626272, 869820.624181122, 670382.324505127, 756075.187804907, 814469.632102184, 844353.990563511, 791753.444124538, 877653.002551476, 878573.578132408, 890136.970948608, 885857.405883153, 878157.829944666, 887698.843087065, 889620.841001504, 879799.845923924, 884208.888127385, 898357.864579188, 880884.566978608, 889962.222241819, 683668.866975292, 805598.894264544, 909299.461419642, 891414.053749677, 904659.335326505, 909644.759697384, 892530.068333628, 899930.674068289, 907381.204461107, 912561.895264867, 903738.074967131, 892599.768882661, 924528.238274902, 912225.38034991, 900850.869381099, 818801.057058099, 721112.164820614, 942660.769624098, 922582.726836551, 933479.417019204, 941984.446095638, 926359.43933306, 921167.244412586, 935226.589753701, 937821.440260324, 836060.587948142, 821185.220299723, 942643.873366263, 939692.982592546, 936914.563579444, 946935.133381224, 740924.827494476, 845468.454215484, 949030.947463913, 952829.60044896, 961931.455361281, 940379.921741284, 942097.793994202, 967297.313165474, 965368.887629085, 964949.830439397, 952177.618672201, 969485.769234931, 968680.447595383, 961203.093067663, 976075.100363661, 1005408.30341281, 995108.601080647, 989022.965863233, 982164.386502628, 1005390.37337633, 874803.346009301, 759521.491819356, 990646.153843969, 995608.073902101, 989193.545453709, 984517.103585453, 1004585.68799165, 990559.066283326, 991278.011859138, 1014091.53879431, 1025179.41263846, 1022684.84503683, 999912.297687341, 1014851.42659405, 913797.403912561, 813034.788679554, 914333.843267752, 1033089.72713838, 1033059.01165322, 1025029.29292623, 1018267.73036226, 1040913.94301689, 919505.333767303]]} |
/* | |
* The CSS below is intended for the "global" styles of svg.line-graph, not specifics per graph such as color of lines | |
* which is expected to come from the data itself (even though it can be done via CSS as well if wanted) | |
*/ | |
svg.line-graph text { | |
cursor: default; | |
} | |
svg.line-graph .hover-line { | |
stroke: #6E7B8B; | |
} | |
svg.line-graph .hide { | |
opacity: 0; | |
} | |
svg.line-graph .axis { | |
shape-rendering: crispEdges; | |
} | |
svg.line-graph .x.axis line { | |
stroke: #D3D3D3; | |
} | |
svg.line-graph .x.axis .minor { | |
stroke-opacity: .5; | |
} | |
svg.line-graph .x.axis path { | |
display: none; | |
} | |
svg.line-graph .x.axis text { | |
font-size: 10px; | |
} | |
svg.line-graph .y.axis line, .y.axis path { | |
fill: none; | |
stroke: #000; | |
} | |
svg.line-graph .y.axis text { | |
font-size: 12px; | |
} | |
svg.line-graph .scale-button:not(.selected):hover { | |
text-decoration: underline; | |
cursor: pointer !important; | |
} | |
svg.line-graph .date-label { | |
fill: #6E7B8B; | |
} |