ohif-viewer/platform/core/src/DICOMSR/dataExchange.js
2020-06-30 14:02:23 -03:00

170 lines
4.8 KiB
JavaScript

import log from '../log';
import studies from '../studies';
import utils from '../utils';
import {
retrieveMeasurementFromSR,
stowSRFromMeasurements,
} from './handleStructuredReport';
import findMostRecentStructuredReport from './utils/findMostRecentStructuredReport';
import cornerstoneTools from 'cornerstone-tools';
import dcmjs from 'dcmjs';
const { MeasurementReport } = dcmjs.adapters.Cornerstone;
/**
*
* @typedef serverType
* @property {string} type - type of the server
* @property {string} wadoRoot - server wado root url
*
*/
/**
* Function to be registered into MeasurementAPI to retrieve measurements from DICOM Structured Reports
*
* @param {serverType} server
* @returns {Promise} Should resolve with OHIF measurementData object
*/
const retrieveMeasurements = server => {
log.info('[DICOMSR] retrieveMeasurements');
if (!server || server.type !== 'dicomWeb') {
log.error('[DICOMSR] DicomWeb server is required!');
return Promise.reject({});
}
const serverUrl = server.wadoRoot;
const studies = utils.studyMetadataManager.all();
const latestSeries = findMostRecentStructuredReport(studies);
if (!latestSeries) return Promise.resolve({});
return retrieveMeasurementFromSR(latestSeries, studies, serverUrl);
};
/**
*
* @param {object[]} measurementData An array of measurements from the measurements service
* that you wish to serialize.
*/
const downloadReport = measurementData => {
const srDataset = generateReport(measurementData);
const reportBlob = dcmjs.data.datasetToBlob(srDataset);
//Create a URL for the binary.
var objectUrl = URL.createObjectURL(reportBlob);
window.location.assign(objectUrl);
};
/**
*
* @param {object[]} measurementData An array of measurements from the measurements service
* that you wish to serialize.
*/
const generateReport = measurementData => {
const ids = measurementData.map(md => md.id);
const filteredToolState = _getFilteredCornerstoneToolState(ids);
const report = MeasurementReport.generateReport(
filteredToolState,
cornerstone.metaData
);
return report.dataset;
};
/**
*
* @param {object[]} measurementData An array of measurements from the measurements service
* that you wish to serialize.
* @param {object} dataSource The dataSource that you wish to use to persist the data.
* @return {object} The naturalized report
*/
const storeMeasurements = async (measurementData, dataSource) => {
// TODO -> Eventually use the measurements directly and not the dcmjs adapter,
// But it is good enough for now whilst we only have cornerstone as a datasource.
log.info('[DICOMSR] storeMeasurements');
if (!dataSource || !dataSource.store || !dataSource.store.dicom) {
log.error('[DICOMSR] datasource has no dataSource.store.dicom endpoint!');
return Promise.reject({});
}
try {
const naturalizedReport = generateReport(measurementData);
const { StudyInstanceUID } = naturalizedReport;
await dataSource.store.dicom(naturalizedReport);
if (StudyInstanceUID) {
dataSource.deleteStudyMetadataPromise(StudyInstanceUID);
}
return naturalizedReport;
} catch (error) {
log.error(
`[DICOMSR] Error while saving the measurements: ${error.message}`
);
throw new Error(error.message || 'Error while saving the measurements.');
}
};
function _getFilteredCornerstoneToolState(uidFilter) {
const globalToolState = cornerstoneTools.globalImageIdSpecificToolStateManager.saveToolState();
const filteredToolState = {};
function addToFilteredToolState(imageId, toolType, toolDataI) {
if (!filteredToolState[imageId]) {
filteredToolState[imageId] = {};
}
const imageIdSpecificToolState = filteredToolState[imageId];
if (!imageIdSpecificToolState[toolType]) {
imageIdSpecificToolState[toolType] = {
data: [],
};
}
const toolData = imageIdSpecificToolState[toolType].data;
toolData.push(toolDataI);
}
const uids = uidFilter.slice();
const imageIds = Object.keys(globalToolState);
for (let i = 0; i < imageIds.length; i++) {
const imageId = imageIds[i];
const imageIdSpecificToolState = globalToolState[imageId];
const toolTypes = Object.keys(imageIdSpecificToolState);
for (let j = 0; j < toolTypes.length; j++) {
const toolType = toolTypes[j];
const toolData = imageIdSpecificToolState[toolType].data;
if (toolData) {
for (let k = 0; k < toolData.length; k++) {
const toolDataK = toolData[k];
const uidIndex = uids.findIndex(uid => uid === toolDataK.id);
if (uidIndex !== -1) {
addToFilteredToolState(imageId, toolType, toolDataK);
uids.splice(uidIndex, 1);
if (!uids.length) {
return filteredToolState;
}
}
}
}
}
}
return filteredToolState;
}
export { retrieveMeasurements, storeMeasurements, downloadReport };