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December 10, 2016 01:14
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Downsamples a dataset to threshold while maintaining the visual characteristics
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/* | |
* The MIT License | |
Copyright (c) 2013 by Sveinn Steinarsson | |
Permission is hereby granted, free of charge, to any person obtaining a copy | |
of this software and associated documentation files (the "Software"), to deal | |
in the Software without restriction, including without limitation the rights | |
to use, copy, modify, merge, publish, distribute, sublicense, and/or sell | |
copies of the Software, and to permit persons to whom the Software is | |
furnished to do so, subject to the following conditions: | |
The above copyright notice and this permission notice shall be included in | |
all copies or substantial portions of the Software. | |
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR | |
IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, | |
FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE | |
AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER | |
LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, | |
OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN | |
THE SOFTWARE. | |
*/ | |
import Ember from 'ember'; | |
const { floor, abs } = Math; | |
const { isPresent, assert } = Ember; | |
/** | |
* Downsamples a dataset to threshold while maintaining the visual characteristics | |
* | |
* @param {Array} data Array of number pairs [[x,y],[x,y]] | |
* @param {Number} threshold Downsample rate, typically a range between 0 and `data.length`. | |
* A value of 0 disables sampling. | |
* | |
* @return {Array} Array of downsampled values. | |
* @public | |
*/ | |
function largestTriangleThreeBuckets(data, threshold) { | |
let dataLength = data.length; | |
if (threshold >= dataLength || threshold === 0) { | |
return data; // Nothing to do | |
} | |
assert('data should be an array of arrays representing [x,y] points in series', dataLength > 0 && isPresent(data[0][0]) && isPresent(data[0][1])); | |
let sampled = []; | |
let sampledIndex = 0; | |
// Bucket size. Leave room for start and end data points | |
let every = (dataLength - 2) / (threshold - 2); | |
let a, // Initially a is the first point in the triangle | |
maxAreaPoint, | |
maxArea, | |
area, | |
nextA; | |
a = 0; | |
sampled[sampledIndex++] = data[a]; // Always add the first point | |
for (let i = 0; i < threshold - 2; i++) { | |
// Calculate point average for next bucket (containing c) | |
let avgX = 0, | |
avgY = 0, | |
avgRangeStart = floor((i + 1) * every) + 1, | |
avgRangeEnd = floor((i + 2) * every) + 1; | |
avgRangeEnd = avgRangeEnd < dataLength ? avgRangeEnd : dataLength; | |
let avgRangeLength = avgRangeEnd - avgRangeStart; | |
for (; avgRangeStart < avgRangeEnd; avgRangeStart++) { | |
avgX += data[avgRangeStart][0] * 1; // * 1 enforces Number (value may be Date) | |
avgY += data[avgRangeStart][1] * 1; | |
} | |
avgX /= avgRangeLength; | |
avgY /= avgRangeLength; | |
// Get the range for this bucket | |
let rangeOffs = floor((i + 0) * every) + 1, | |
rangeTo = floor((i + 1) * every) + 1; | |
// Point a | |
let pointAX = data[a][0] * 1, // enforce Number (value may be Date) | |
pointAY = data[a][1] * 1; | |
maxArea = area = -1; | |
for (; rangeOffs < rangeTo; rangeOffs++) { | |
// Calculate triangle area over three buckets | |
area = abs((pointAX - avgX) * (data[rangeOffs][1] - pointAY) - | |
(pointAX - data[rangeOffs][0]) * (avgY - pointAY) | |
) * 0.5; | |
if (area > maxArea) { | |
maxArea = area; | |
maxAreaPoint = data[rangeOffs]; | |
nextA = rangeOffs; // Next a is this b | |
} | |
} | |
sampled[sampledIndex++] = maxAreaPoint; // Pick this point from the bucket | |
a = nextA; // This a is the next a (chosen b) | |
} | |
sampled[sampledIndex++] = data[dataLength - 1]; // Always add last | |
return sampled; | |
} | |
export default largestTriangleThreeBuckets; |
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