mirror of
https://github.com/chanzuckerberg/cellxgene.git
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* revert all commits to before Typescript migration * update compat workflow to match latest deps (#2335) * update compat workflow to match latest deps * attempt to debug * attempt to debug * remove debugging code * typo * update deps to match desktop (#2340) * fix: don't run lint with `--fix` on push tests (#2273) * fix: don't run lint with `--fix` on push tests * npx Co-authored-by: maniarathi <mani.arathi@gmail.com> Co-authored-by: Madison Dunitz <madison.dunitz@chanzuckerberg.com> * rename X_approx_distribution to X_approximate_distribution (#2337) * Correctly handle non-finite numbers in heuristic determination of X distribution (#2342) * handle non-finites explicitly * improve and test edge case handling for distribution estimation * revert debugging changes * code readability * clean up type inferencing (#2332) * unit tests for 64 bit conversion * clean up type handling * type inference tests * more type inference fixes * use schema to determine user intent for data typing * stop using deprecated API * fbs type encoding test * add missing test * add more tests * correctly infer X type for CXG adaptor * lint * fix typo * ts migration * cleanup from PR review * lint * PR review changes * remove unused packages from client (#2359) * remove unused packages from client * add missing peer dep * fix: disable FE auth testing on compatibility tests (#2377) * update: release process (#2277) Co-authored-by: maniarathi <mani.arathi@gmail.com> * fix: remove spaces in param setup (#2380) * delete deploy workflow (#2396) * undo reformatting which now does not pass lint * fix snapshots which changed due to npm dep changes * add missing quoting to snapshot * another snapshot typo fix * TS Revert (2) - replay PR #2347 and #2354 (#2403) * replay edits from PR 2347 * TS Revert (3) - replay edits in PR #2327 (#2404) * replay edits in PR 2327 * TS Revert (4) - replay PR #2355 (#2405) * replay edits in PR 2355 * add additional babel config * reformat with new prettier config Co-authored-by: Severiano Badajoz <sbadajoz@chanzuckerberg.com> Co-authored-by: maniarathi <mani.arathi@gmail.com> Co-authored-by: Madison Dunitz <madison.dunitz@chanzuckerberg.com>
188 lines
5.3 KiB
JavaScript
188 lines
5.3 KiB
JavaScript
import React from "react";
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import { connect } from "react-redux";
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import * as d3 from "d3";
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import {
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Classes,
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Popover,
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PopoverInteractionKind,
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Position,
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} from "@blueprintjs/core";
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@connect((state) => ({
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schema: state.annoMatrix?.schema,
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}))
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class Occupancy extends React.PureComponent {
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_WIDTH = 100;
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_HEIGHT = 11;
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createHistogram = () => {
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/*
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Knowing that colorScale is based off continous data,
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createHistogram fetches the continous data in relation to the cells releveant to the catagory value.
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It then seperates that data into 50 bins for drawing the mini-histogram
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*/
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const { metadataField, categoryData, colorData, categoryValue } =
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this.props;
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if (!this.canvas) return;
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const groupBy = categoryData.col(metadataField);
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const col = colorData.icol(0);
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const range = col.summarize();
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const histogramMap = col.histogram(
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50,
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[range.min, range.max],
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groupBy
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); /* Because the signature changes we really need different names for histogram to differentiate signatures */
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const bins = histogramMap.has(categoryValue)
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? histogramMap.get(categoryValue)
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: new Array(50).fill(0);
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const xScale = d3
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.scaleLinear()
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.domain([0, bins.length])
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.range([0, this._WIDTH]);
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const largestBin = Math.max(...bins);
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const yScale = d3
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.scaleLinear()
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.domain([0, largestBin])
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.range([0, this._HEIGHT]);
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const ctx = this.canvas.getContext("2d");
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ctx.fillStyle = "#000";
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let x;
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let y;
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const rectWidth = this._WIDTH / bins.length;
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for (let i = 0, { length } = bins; i < length; i += 1) {
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x = xScale(i);
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y = yScale(bins[i]);
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ctx.fillRect(x, this._HEIGHT - y, rectWidth, y);
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}
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};
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createOccupancyStack = () => {
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/*
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Knowing that the color scale is based off of catagorical data,
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createOccupancyStack obtains a map showing the number if cells per colored value
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Using the colorScale a stack of colored bars is drawn representing the map
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*/
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const {
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metadataField,
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categoryData,
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colorAccessor,
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categoryValue,
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colorTable,
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schema,
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colorData,
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} = this.props;
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const { scale: colorScale } = colorTable;
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const ctx = this.canvas?.getContext("2d");
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if (!ctx) return;
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const groupBy = categoryData.col(metadataField);
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const occupancyMap = colorData
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.col(colorAccessor)
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.histogramCategorical(groupBy);
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const occupancy = occupancyMap.get(categoryValue);
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if (occupancy && occupancy.size > 0) {
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// not all categories have occupancy, so occupancy may be undefined.
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const x = d3
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.scaleLinear()
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/* get all the keys d[1] as an array, then find the sum */
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.domain([0, d3.sum(Array.from(occupancy.values()))])
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.range([0, this._WIDTH]);
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const categories =
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schema.annotations.obsByName[colorAccessor]?.categories;
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let currentOffset = 0;
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const dfColumn = colorData.col(colorAccessor);
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const categoryValues = dfColumn.summarizeCategorical().categories;
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let o;
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let scaledValue;
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let value;
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for (let i = 0, { length } = categoryValues; i < length; i += 1) {
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value = categoryValues[i];
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o = occupancy.get(value);
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scaledValue = x(o);
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ctx.fillStyle = o
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? colorScale(categories.indexOf(value))
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: "rgb(255,255,255)";
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ctx.fillRect(currentOffset, 0, o ? scaledValue : 0, this._HEIGHT);
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currentOffset += o ? scaledValue : 0;
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}
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}
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};
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render() {
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const { colorAccessor, categoryValue, colorByIsCategorical } = this.props;
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const { canvas } = this;
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if (canvas)
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canvas.getContext("2d").clearRect(0, 0, this._WIDTH, this._HEIGHT);
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return (
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<Popover
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interactionKind={PopoverInteractionKind.HOVER_TARGET_ONLY}
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hoverOpenDelay={1500}
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hoverCloseDelay={200}
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position={Position.LEFT}
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modifiers={{
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preventOverflow: { enabled: false },
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hide: { enabled: false },
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}}
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lazy
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usePortal
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disabled={colorByIsCategorical}
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popoverClassName={Classes.POPOVER_CONTENT_SIZING}
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>
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<canvas
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className={Classes.POPOVER_TARGET}
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style={{
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marginRight: 5,
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width: this._WIDTH,
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height: this._HEIGHT,
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borderBottom: colorByIsCategorical
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? ""
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: "solid rgb(230, 230, 230) 0.25px",
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}}
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width={this._WIDTH}
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height={this._HEIGHT}
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ref={(ref) => {
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this.canvas = ref;
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if (colorByIsCategorical) this.createOccupancyStack();
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else this.createHistogram();
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}}
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/>
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<div key="text" style={{ fontSize: "14px" }}>
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<p style={{ margin: "0" }}>
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This histograms shows the distribution of{" "}
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<strong>{colorAccessor}</strong> within{" "}
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<strong>{categoryValue}</strong>.
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<br />
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<br />
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The x axis is the same for each histogram, while the y axis is
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scaled to the largest bin within this histogram instead of the
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largest bin within the whole category.
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</p>
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</div>
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</Popover>
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);
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}
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}
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export default Occupancy;
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