ohif-viewer/Packages/lesiontracker/client/compatibility/bidirectionalTool.js
Aysel Afsar b51628cc9f - Rename lesion tool as bidirectional tool
- Remove measurementType property and use toolType property in the parts that uses measurementType
- Add toolType in syncMeasurementAndToolData method
- Hide Convert to Non-Target option in lesionLocationDialog for CRUNEX tools
2016-03-04 19:03:16 -05:00

1127 lines
44 KiB
JavaScript

(function($, cornerstone, cornerstoneMath, cornerstoneTools) {
'use strict';
var toolType = 'bidirectional';
var configuration = {
setLesionNumberCallback: setLesionNumberCallback,
getLesionLocationCallback: getLesionLocationCallback,
changeLesionLocationCallback: changeLesionLocationCallback
};
// Used to cancel tool placement
var keys = {
ESC: 27
};
// Set lesion number
// Get Target lesions on image
function setLesionNumberCallback(measurementData, eventData, doneCallback) {
var lesionNumber = 1;
doneCallback(lesionNumber);
}
// Define a callback to get your text annotation
// This could be used, e.g. to open a modal
function getLesionLocationCallback(measurementData, eventData, doneCallback) {
//doneCallback(prompt('Enter your lesion location:'));
}
function changeLesionLocationCallback(measurementData, eventData, doneCallback) {
//doneCallback(prompt('Change your lesion location:'));
}
function createNewMeasurement(mouseEventData) {
var imageId = mouseEventData.image.imageId;
// Get studyInstanceUid
var study = cornerstoneTools.metaData.get('study', imageId);
var studyInstanceUid = study.studyInstanceUid;
var patientId = study.patientId;
// Get seriesInstanceUid
var series = cornerstoneTools.metaData.get('series', imageId);
var seriesInstanceUid = series.seriesInstanceUid;
// Create the measurement data for this tool with the end handle activated
var measurementData = {
visible: true,
active: true,
handles: {
start: {
x: mouseEventData.currentPoints.image.x,
y: mouseEventData.currentPoints.image.y,
highlight: true,
active: false,
drawnIndependently: true,
index: 0
},
end: {
x: mouseEventData.currentPoints.image.x,
y: mouseEventData.currentPoints.image.y,
highlight: true,
active: true,
drawnIndependently: true,
index: 1
},
textBox: {
x: mouseEventData.currentPoints.image.x - 50,
y: mouseEventData.currentPoints.image.y - 70,
active: false,
movesIndependently: false,
drawnIndependently: true,
allowedOutsideImage: true,
hasBoundingBox: true
},
perpendicularStart: {
x: mouseEventData.currentPoints.image.x,
y: mouseEventData.currentPoints.image.y,
highlight: true,
active: false,
locked: true, // If perpendicular line is connected to long-line
drawnIndependently: true,
index: 2
},
perpendicularEnd: {
x: mouseEventData.currentPoints.image.x,
y: mouseEventData.currentPoints.image.y,
highlight: true,
active: false,
drawnIndependently: true,
index: 3
}
},
imageId: imageId,
seriesInstanceUid: seriesInstanceUid,
studyInstanceUid: studyInstanceUid,
patientId: patientId,
longestDiameter: 0,
shortestDiameter: 0,
isDeleted: false,
isTarget: true,
toolType: 'bidirectional'
};
return measurementData;
}
function addNewMeasurement(mouseEventData) {
var element = mouseEventData.element;
// LT-29 Disable Target Measurements when pixel spacing is not available
if (!mouseEventData.image.rowPixelSpacing || !mouseEventData.image.columnPixelSpacing) {
return;
}
function doneCallback(lesionNumber) {
measurementData.lesionNumber = lesionNumber;
measurementData.active = false;
cornerstone.updateImage(element);
}
var measurementData = createNewMeasurement(mouseEventData);
var eventData = {
mouseButtonMask: mouseEventData.which
};
// Set lesion number and lesion name
var config = cornerstoneTools.bidirectional.getConfiguration();
if (measurementData.lesionNumber === undefined) {
config.setLesionNumberCallback(measurementData, mouseEventData, doneCallback);
}
// associate this data with this imageId so we can render it and manipulate it
cornerstoneTools.addToolState(element, toolType, measurementData);
// since we are dragging to another place to drop the end point, we can just activate
// the end point and let the moveHandle move it for us.
$(element).off('CornerstoneToolsMouseMove', mouseMoveCallback);
$(element).off('CornerstoneToolsMouseDown', mouseDownCallback);
$(element).off('CornerstoneToolsMouseDownActivate', cornerstoneTools.bidirectional.mouseDownActivateCallback);
$(element).off('CornerstoneToolsMouseDoubleClick', doubleClickCallback);
// Add a flag for using Esc to cancel tool placement
var cancelled = false;
function cancelCallback(e) {
// If the Esc key was pressed, set the flag to true
if (e.which === keys.ESC) {
cancelled = true;
cornerstoneTools.removeToolState(element, toolType, measurementData);
}
// Don't propagate this keydown event so it can't interfere
// with anything outside of this tool
return false;
}
// Bind a one-time event listener for the Esc key
$(element).one('keydown', cancelCallback);
cornerstone.updateImage(element);
cornerstoneTools.moveNewHandle(mouseEventData, toolType, measurementData, measurementData.handles.end, function() {
if (cancelled || cornerstoneTools.anyHandlesOutsideImage(mouseEventData, measurementData.handles)) {
// delete the measurement
cornerstoneTools.removeToolState(element, toolType, measurementData);
} else {
// Set lesionMeasurementData Session
config.getLesionLocationCallback(measurementData, mouseEventData, doneCallback);
}
// Unbind the Esc keydown hook
$(element).off('keydown', cancelCallback);
// perpendicular line is not connected to long-line
measurementData.handles.perpendicularStart.locked = false;
$(element).on('CornerstoneToolsMouseMove', eventData, mouseMoveCallback);
$(element).on('CornerstoneToolsMouseDown', eventData, mouseDownCallback);
$(element).on('CornerstoneToolsMouseDownActivate', eventData, cornerstoneTools.bidirectional.mouseDownActivateCallback);
$(element).on('CornerstoneToolsMouseDoubleClick', eventData, doubleClickCallback);
cornerstone.updateImage(element);
});
}
function addNewMeasurementTouch(touchEventData) {
var element = touchEventData.element;
// LT-29 Disable Target Measurements when pixel spacing is not available
if (!touchEventData.image.rowPixelSpacing || !touchEventData.image.columnPixelSpacing) {
return;
}
function doneCallback(lesionNumber) {
measurementData.lesionNumber = lesionNumber;
measurementData.active = false;
cornerstone.updateImage(element);
}
var measurementData = createNewMeasurement(touchEventData);
// Set lesion number and lesion name
var config = cornerstoneTools.bidirectional.getConfiguration();
if (measurementData.lesionNumber === undefined) {
config.setLesionNumberCallback(measurementData, mouseEventData, doneCallback);
}
// associate this data with this imageId so we can render it and manipulate it
cornerstoneTools.addToolState(element, toolType, measurementData);
// since we are dragging to another place to drop the end point, we can just activate
// the end point and let the moveHandle move it for us.
$(element).off('CornerstoneToolsTouchDrag', cornerstoneTools.bidirectional.touchMoveHandle);
$(element).off('CornerstoneToolsTap', cornerstoneTools.bidirectional.tapCallback);
$(element).off('CornerstoneToolsDragStartActive', cornerstoneTools.bidirectional.touchDownActivateCallback);
cornerstone.updateImage(element);
cornerstoneTools.moveNewHandleTouch(touchEventData, toolType, measurementData, measurementData.handles.end, function() {
if (cancelled || cornerstoneTools.anyHandlesOutsideImage(touchEventData, measurementData.handles)) {
// delete the measurement
cornerstoneTools.removeToolState(element, toolType, measurementData);
} else {
// Set lesionMeasurementData Session
config.getLesionLocationCallback(measurementData, touchEventData, doneCallback);
}
// perpendicular line is not connected to long-line
measurementData.handles.perpendicularStart.locked = false;
$(element).on('CornerstoneToolsTouchDrag', cornerstoneTools.bidirectional.touchMoveHandle);
$(element).on('CornerstoneToolsTap', cornerstoneTools.bidirectional.tapCallback);
$(element).on('CornerstoneToolsDragStartActive', cornerstoneTools.bidirectional.touchDownActivateCallback);
cornerstone.updateImage(element);
});
}
function pointNearTool(element, data, coords) {
var lineSegment = {
start: cornerstone.pixelToCanvas(element, data.handles.start),
end: cornerstone.pixelToCanvas(element, data.handles.end)
};
var distanceToPoint = cornerstoneMath.lineSegment.distanceToPoint(lineSegment, coords);
if (cornerstoneTools.pointInsideBoundingBox(data.handles.textBox, coords)) {
return true;
}
if (pointNearPerpendicular(element, data.handles, coords)) {
return true;
}
return (distanceToPoint < 5);
}
function pointNearPerpendicular(element, handles, coords) {
var lineSegment = {
start: cornerstone.pixelToCanvas(element, handles.perpendicularStart),
end: cornerstone.pixelToCanvas(element, handles.perpendicularEnd)
};
var distanceToPoint = cornerstoneMath.lineSegment.distanceToPoint(lineSegment, coords);
return (distanceToPoint < 5);
}
// Move long-axis start point
function perpendicularBothFixedLeft(eventData, data) {
var longLine = {
start: {
x: data.handles.start.x,
y: data.handles.start.y
},
end: {
x: data.handles.end.x,
y: data.handles.end.y
}
};
var perpendicularLine = {
start: {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
},
end: {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
}
};
var intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
var distanceFromPerpendicularP1 = cornerstoneMath.point.distance(data.handles.perpendicularStart, intersection);
var distanceFromPerpendicularP2 = cornerstoneMath.point.distance(data.handles.perpendicularEnd, intersection);
var distanceToLineP2 = cornerstoneMath.point.distance(data.handles.end, intersection);
var newLineLength = cornerstoneMath.point.distance(data.handles.end, eventData.currentPoints.image);
if (newLineLength <= distanceToLineP2) {
return false;
}
var dx = (data.handles.end.x - eventData.currentPoints.image.x) / newLineLength;
var dy = (data.handles.end.y - eventData.currentPoints.image.y) / newLineLength;
var k = distanceToLineP2 / newLineLength;
var newIntersection = {
x: data.handles.end.x + ((eventData.currentPoints.image.x - data.handles.end.x) * k),
y: data.handles.end.y + ((eventData.currentPoints.image.y - data.handles.end.y) * k)
};
data.handles.perpendicularStart.x = newIntersection.x - distanceFromPerpendicularP1 * dy;
data.handles.perpendicularStart.y = newIntersection.y + distanceFromPerpendicularP1 * dx;
data.handles.perpendicularEnd.x = newIntersection.x + distanceFromPerpendicularP2 * dy;
data.handles.perpendicularEnd.y = newIntersection.y - distanceFromPerpendicularP2 * dx;
return true;
}
// Move long-axis end point
function perpendicularBothFixedRight(eventData, data) {
var longLine = {
start: {
x: data.handles.start.x,
y: data.handles.start.y
},
end: {
x: data.handles.end.x,
y: data.handles.end.y
}
};
var perpendicularLine = {
start: {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
},
end: {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
}
};
var intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
var distanceFromPerpendicularP1 = cornerstoneMath.point.distance(data.handles.perpendicularStart, intersection);
var distanceFromPerpendicularP2 = cornerstoneMath.point.distance(data.handles.perpendicularEnd, intersection);
var distanceToLineP2 = cornerstoneMath.point.distance(data.handles.start, intersection);
var newLineLength = cornerstoneMath.point.distance(data.handles.start, eventData.currentPoints.image);
if (newLineLength <= distanceToLineP2) {
return false;
}
var dx = (data.handles.start.x - eventData.currentPoints.image.x) / newLineLength;
var dy = (data.handles.start.y - eventData.currentPoints.image.y) / newLineLength;
var k = distanceToLineP2 / newLineLength;
var newIntersection = {
x: data.handles.start.x + ((eventData.currentPoints.image.x - data.handles.start.x) * k),
y: data.handles.start.y + ((eventData.currentPoints.image.y - data.handles.start.y) * k)
};
data.handles.perpendicularStart.x = newIntersection.x + distanceFromPerpendicularP1 * dy;
data.handles.perpendicularStart.y = newIntersection.y - distanceFromPerpendicularP1 * dx;
data.handles.perpendicularEnd.x = newIntersection.x - distanceFromPerpendicularP2 * dy;
data.handles.perpendicularEnd.y = newIntersection.y + distanceFromPerpendicularP2 * dx;
return true;
}
// Move perpendicular line start point
function perpendicularLeftFixedPoint(eventData, data) {
var fudgeFactor = 1;
var fixedPoint = data.handles.perpendicularEnd;
var movedPoint = eventData.currentPoints.image;
var distanceFromFixed = cornerstoneMath.lineSegment.distanceToPoint(data.handles, fixedPoint);
var distanceFromMoved = cornerstoneMath.lineSegment.distanceToPoint(data.handles, movedPoint);
var distanceBetweenPoints = cornerstoneMath.point.distance(fixedPoint, movedPoint);
var total = distanceFromFixed + distanceFromMoved;
if (distanceBetweenPoints <= distanceFromFixed) {
return false;
}
var length = cornerstoneMath.point.distance(data.handles.start, data.handles.end);
var dx = (data.handles.start.x - data.handles.end.x) / length;
var dy = (data.handles.start.y - data.handles.end.y) / length;
var adjustedLineP1 = {
x: data.handles.start.x - fudgeFactor * dx,
y: data.handles.start.y - fudgeFactor * dy
};
var adjustedLineP2 = {
x: data.handles.end.x + fudgeFactor * dx,
y: data.handles.end.y + fudgeFactor * dy
};
data.handles.perpendicularStart.x = movedPoint.x;
data.handles.perpendicularStart.y = movedPoint.y;
data.handles.perpendicularEnd.x = movedPoint.x - total * dy;
data.handles.perpendicularEnd.y = movedPoint.y + total * dx;
var longLine = {
start: {
x: data.handles.start.x,
y: data.handles.start.y
},
end: {
x: data.handles.end.x,
y: data.handles.end.y
}
};
var perpendicularLine = {
start: {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
},
end: {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
}
};
var intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
if (!intersection) {
if (cornerstoneMath.point.distance(movedPoint, data.handles.start) > cornerstoneMath.point.distance(movedPoint, data.handles.end)) {
data.handles.perpendicularStart.x = adjustedLineP2.x + distanceFromMoved * dy;
data.handles.perpendicularStart.y = adjustedLineP2.y - distanceFromMoved * dx;
data.handles.perpendicularEnd.x = data.handles.perpendicularStart.x - total * dy;
data.handles.perpendicularEnd.y = data.handles.perpendicularStart.y + total * dx;
return true;
} else {
data.handles.perpendicularStart.x = adjustedLineP1.x + distanceFromMoved * dy;
data.handles.perpendicularStart.y = adjustedLineP1.y - distanceFromMoved * dx;
data.handles.perpendicularEnd.x = data.handles.perpendicularStart.x - total * dy;
data.handles.perpendicularEnd.y = data.handles.perpendicularStart.y + total * dx;
return true;
}
}
return true;
}
// Move perpendicular line end point
function perpendicularRightFixedPoint(eventData, data) {
var fudgeFactor = 1;
var fixedPoint = data.handles.perpendicularStart;
var movedPoint = eventData.currentPoints.image;
var distanceFromFixed = cornerstoneMath.lineSegment.distanceToPoint(data.handles, fixedPoint);
var distanceFromMoved = cornerstoneMath.lineSegment.distanceToPoint(data.handles, movedPoint);
var distanceBetweenPoints = cornerstoneMath.point.distance(fixedPoint, movedPoint);
var total = distanceFromFixed + distanceFromMoved;
if (distanceBetweenPoints <= distanceFromFixed) {
return false;
}
var length = cornerstoneMath.point.distance(data.handles.start, data.handles.end);
var dx = (data.handles.start.x - data.handles.end.x) / length;
var dy = (data.handles.start.y - data.handles.end.y) / length;
var adjustedLineP1 = {
x: data.handles.start.x - fudgeFactor * dx,
y: data.handles.start.y - fudgeFactor * dy
};
var adjustedLineP2 = {
x: data.handles.end.x + fudgeFactor * dx,
y: data.handles.end.y + fudgeFactor * dy
};
data.handles.perpendicularStart.x = movedPoint.x + total * dy;
data.handles.perpendicularStart.y = movedPoint.y - total * dx;
data.handles.perpendicularEnd.x = movedPoint.x;
data.handles.perpendicularEnd.y = movedPoint.y;
var longLine = {
start: {
x: data.handles.start.x,
y: data.handles.start.y
},
end: {
x: data.handles.end.x,
y: data.handles.end.y
}
};
var perpendicularLine = {
start: {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
},
end: {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
}
};
var intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
if (!intersection) {
if (cornerstoneMath.point.distance(movedPoint, data.handles.start) > cornerstoneMath.point.distance(movedPoint, data.handles.end)) {
data.handles.perpendicularEnd.x = adjustedLineP2.x - distanceFromMoved * dy;
data.handles.perpendicularEnd.y = adjustedLineP2.y + distanceFromMoved * dx;
data.handles.perpendicularStart.x = data.handles.perpendicularEnd.x + total * dy;
data.handles.perpendicularStart.y = data.handles.perpendicularEnd.y - total * dx;
return true;
} else {
data.handles.perpendicularEnd.x = adjustedLineP1.x - distanceFromMoved * dy;
data.handles.perpendicularEnd.y = adjustedLineP1.y + distanceFromMoved * dx;
data.handles.perpendicularStart.x = data.handles.perpendicularEnd.x + total * dy;
data.handles.perpendicularStart.y = data.handles.perpendicularEnd.y - total * dx;
return true;
}
}
return true;
}
// Sets position of handles(start, end, perpendicularStart, perpendicularEnd)
function setHandlesPosition(handle, eventData, data) {
var movedPoint,
outOfBounds,
result,
intersection,
d1,
d2;
var longLine = {},
perpendicularLine = {};
if (handle.index === 0) {
// if long-axis start point is moved
result = perpendicularBothFixedLeft(eventData, data);
if (result) {
handle.x = eventData.currentPoints.image.x;
handle.y = eventData.currentPoints.image.y;
} else {
eventData.currentPoints.image.x = handle.x;
eventData.currentPoints.image.y = handle.y;
}
} else if (handle.index === 1) {
// if long-axis end point is moved
result = perpendicularBothFixedRight(eventData, data);
if (result) {
handle.x = eventData.currentPoints.image.x;
handle.y = eventData.currentPoints.image.y;
} else {
eventData.currentPoints.image.x = handle.x;
eventData.currentPoints.image.y = handle.y;
}
} else if (handle.index === 2) {
outOfBounds = false;
// if perpendicular start point is moved
longLine.start = {
x: data.handles.start.x,
y: data.handles.start.y
};
longLine.end = {
x: data.handles.end.x,
y: data.handles.end.y
};
perpendicularLine.start = {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
};
perpendicularLine.end = {
x: eventData.currentPoints.image.x,
y: eventData.currentPoints.image.y
};
intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
if (!intersection) {
perpendicularLine.end = {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
};
intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
d1 = cornerstoneMath.point.distance(intersection, data.handles.start);
d2 = cornerstoneMath.point.distance(intersection, data.handles.end);
if (!intersection || d1 < 3 || d2 < 3) {
outOfBounds = true;
}
}
movedPoint = false;
if (!outOfBounds) {
movedPoint = perpendicularLeftFixedPoint(eventData, data);
if (!movedPoint) {
eventData.currentPoints.image.x = data.handles.perpendicularStart.x;
eventData.currentPoints.image.y = data.handles.perpendicularStart.y;
}
}
} else if (handle.index === 3) {
outOfBounds = false;
// if perpendicular end point is moved
longLine.start = {
x: data.handles.start.x,
y: data.handles.start.y
};
longLine.end = {
x: data.handles.end.x,
y: data.handles.end.y
};
perpendicularLine.start = {
x: data.handles.perpendicularStart.x,
y: data.handles.perpendicularStart.y
};
perpendicularLine.end = {
x: eventData.currentPoints.image.x,
y: eventData.currentPoints.image.y
};
intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
if (!intersection) {
perpendicularLine.end = {
x: data.handles.perpendicularEnd.x,
y: data.handles.perpendicularEnd.y
};
intersection = cornerstoneMath.lineSegment.intersectLine(longLine, perpendicularLine);
d1 = cornerstoneMath.point.distance(intersection, data.handles.start);
d2 = cornerstoneMath.point.distance(intersection, data.handles.end);
if (!intersection || d1 < 3 || d2 < 3) {
outOfBounds = true;
}
}
movedPoint = false;
if (!outOfBounds) {
movedPoint = perpendicularRightFixedPoint(eventData, data);
if (!movedPoint) {
eventData.currentPoints.image.x = data.handles.perpendicularEnd.x;
eventData.currentPoints.image.y = data.handles.perpendicularEnd.y;
}
}
}
}
// Sets drawnIndependently property of control points(handles)
function setControlPoints(handles, value) {
Object.keys(handles).forEach(function(name) {
if (name !== 'textBox') {
var handle = handles[name];
handle.drawnIndependently = value;
}
});
}
//****************************************/
// Cornerstone Methods
//****************************************/
function moveHandle(mouseEventData, toolType, data, handle, doneMovingCallback, preventHandleOutsideImage) {
var element = mouseEventData.element;
var distanceFromTool = {
x: handle.x - mouseEventData.currentPoints.image.x,
y: handle.y - mouseEventData.currentPoints.image.y
};
function mouseDragCallback(e, eventData) {
handle.active = true;
if (handle.index === undefined || handle.index === null) {
handle.x = eventData.currentPoints.image.x + distanceFromTool.x;
handle.y = eventData.currentPoints.image.y + distanceFromTool.y;
} else {
setHandlesPosition(handle, eventData, data);
}
if (preventHandleOutsideImage) {
handle.x = Math.max(handle.x, 0);
handle.x = Math.min(handle.x, eventData.image.width);
handle.y = Math.max(handle.y, 0);
handle.y = Math.min(handle.y, eventData.image.height);
}
cornerstone.updateImage(element);
var eventType = 'CornerstoneToolsMeasurementModified';
var modifiedEventData = {
toolType: toolType,
element: element,
measurementData: data
};
$(element).trigger(eventType, modifiedEventData);
}
$(element).on('CornerstoneToolsMouseDrag', mouseDragCallback);
function mouseUpCallback() {
handle.active = false;
$(element).off('CornerstoneToolsMouseDrag', mouseDragCallback);
$(element).off('CornerstoneToolsMouseUp', mouseUpCallback);
$(element).off('CornerstoneToolsMouseClick', mouseUpCallback);
cornerstone.updateImage(element);
if (typeof doneMovingCallback === 'function') {
doneMovingCallback();
}
}
$(element).on('CornerstoneToolsMouseUp', mouseUpCallback);
$(element).on('CornerstoneToolsMouseClick', mouseUpCallback);
}
// mouseMoveCallback is used to hide handles when mouse is away
function mouseMoveCallback(e, eventData) {
cornerstoneTools.toolCoordinates.setCoords(eventData);
// if a mouse button is down, do nothing
if (eventData.which !== 0) {
return;
}
// if we have no tool data for this element, do nothing
var toolData = cornerstoneTools.getToolState(eventData.element, toolType);
if (!toolData) {
return;
}
// We have tool data, search through all data
// and see if we can activate a handle
var imageNeedsUpdate = false;
for (var i = 0; i < toolData.data.length; i++) {
// get the cursor position in canvas coordinates
var coords = eventData.currentPoints.canvas;
var data = toolData.data[i];
if (cornerstoneTools.handleActivator(eventData.element, data.handles, coords) === true) {
imageNeedsUpdate = true;
}
if ((pointNearTool(eventData.element, data, coords) && !data.active) || (!pointNearTool(eventData.element, data, coords) && data.active)) {
data.active = !data.active;
// Set handles visibility
setControlPoints(data.handles, !data.active);
imageNeedsUpdate = true;
}
}
// Handle activation status changed, redraw the image
if (imageNeedsUpdate === true) {
cornerstone.updateImage(eventData.element);
}
}
// mouseDowCallback is used to restrict behaviour of perpendicular-line
function mouseDownCallback(e, eventData) {
var data;
var element = eventData.element;
function handleDoneMove() {
data.active = false;
data.invalidated = true;
if (cornerstoneTools.anyHandlesOutsideImage(eventData, data.handles)) {
// delete the measurement
cornerstoneTools.removeToolState(element, toolType, data);
}
cornerstone.updateImage(element);
$(element).on('CornerstoneToolsMouseMove', eventData, mouseMoveCallback);
}
if (cornerstoneTools.isMouseButtonEnabled(eventData.which, e.data.mouseButtonMask)) {
var coords = eventData.startPoints.canvas;
var toolData = cornerstoneTools.getToolState(e.currentTarget, toolType);
var i;
// now check to see if there is a handle we can move
if (toolData) {
for (i = 0; i < toolData.data.length; i++) {
data = toolData.data[i];
// Hide control points
setControlPoints(data.handles, true);
var distance = 5;
var handle = cornerstoneTools.getHandleNearImagePoint(element, data.handles, coords, distance);
if (handle) {
$(element).off('CornerstoneToolsMouseMove', mouseMoveCallback);
data.active = true;
moveHandle(eventData, toolType, data, handle, handleDoneMove);
e.stopImmediatePropagation();
return false;
}
}
}
// Now check to see if there is a line we can move
// now check to see if we have a tool that we can move
if (toolData && pointNearTool) {
var options = {
deleteIfHandleOutsideImage: true,
preventHandleOutsideImage: false
};
for (i = 0; i < toolData.data.length; i++) {
data = toolData.data[i];
if (pointNearTool(element, data, coords)) {
$(element).off('CornerstoneToolsMouseMove', mouseMoveCallback);
cornerstoneTools.moveAllHandles(e, data, toolData, toolType, options, handleDoneMove);
e.stopImmediatePropagation();
return false;
}
}
}
}
}
//****************************************/
// Cornerstone Methods end
//****************************************/
// draw perpendicular line
function drawPerpendicularLine(context, eventData, element, data, color, lineWidth) {
// mid point of long-axis line
var mid = {
x: (data.handles.start.x + data.handles.end.x) / 2,
y: (data.handles.start.y + data.handles.end.y) / 2
};
// Length of long-axis
var dx = (data.handles.start.x - data.handles.end.x) * (eventData.image.columnPixelSpacing || 1);
var dy = (data.handles.start.y - data.handles.end.y) * (eventData.image.rowPixelSpacing || 1);
var length = Math.sqrt(dx * dx + dy * dy);
var vectorX = (data.handles.start.x - data.handles.end.x) / length;
var vectorY = (data.handles.start.y - data.handles.end.y) / length;
var perpendicularLineLength = length / 2;
var startX = mid.x + (perpendicularLineLength / 2) * vectorY;
var startY = mid.y - (perpendicularLineLength / 2) * vectorX;
var endX = mid.x - (perpendicularLineLength / 2) * vectorY;
var endY = mid.y + (perpendicularLineLength / 2) * vectorX;
if (data.handles.perpendicularStart.locked) {
data.handles.perpendicularStart.x = startX;
data.handles.perpendicularStart.y = startY;
data.handles.perpendicularEnd.x = endX;
data.handles.perpendicularEnd.y = endY;
}
// Draw perpendicular line
var perpendicularStartCanvas = cornerstone.pixelToCanvas(element, data.handles.perpendicularStart);
var perpendicularEndCanvas = cornerstone.pixelToCanvas(element, data.handles.perpendicularEnd);
context.beginPath();
context.strokeStyle = color;
context.lineWidth = lineWidth;
context.moveTo(perpendicularStartCanvas.x, perpendicularStartCanvas.y);
context.lineTo(perpendicularEndCanvas.x, perpendicularEndCanvas.y);
context.stroke();
}
function findDottedLinePosition(data) {
var distancesArr = [];
var minDistance;
// Find distances between handles and textBox
var distanceToStart = cornerstoneMath.point.distance(data.handles.start, data.handles.textBox);
distancesArr.push({
distance: distanceToStart,
point: data.handles.start
});
minDistance = distanceToStart;
var distanceToEnd = cornerstoneMath.point.distance(data.handles.end, data.handles.textBox);
distancesArr.push({
distance: distanceToEnd,
point: data.handles.end
});
minDistance = Math.min(distanceToEnd, minDistance);
if (data.handles.perpendicularStart.x && data.handles.perpendicularStart.y) {
var distanceToPerpendicularStart = cornerstoneMath.point.distance(data.handles.perpendicularStart, data.handles.textBox);
distancesArr.push({
distance: distanceToPerpendicularStart,
point: data.handles.perpendicularStart
});
minDistance = Math.min(distanceToPerpendicularStart, minDistance);
}
if (data.handles.perpendicularEnd.x && data.handles.perpendicularEnd.y) {
var distanceToPerpendicularEnd = cornerstoneMath.point.distance(data.handles.perpendicularEnd, data.handles.textBox);
distancesArr.push({
distance: distanceToPerpendicularEnd,
point: data.handles.perpendicularEnd
});
minDistance = Math.min(distanceToPerpendicularEnd, minDistance);
}
for (var i = 0; i < distancesArr.length; i++) {
var obj = distancesArr[i];
if (obj.distance === minDistance) {
return obj.point;
}
}
}
///////// BEGIN IMAGE RENDERING ///////
function onImageRendered(e, eventData) {
// if we have no toolData for this element, return immediately as there is nothing to do
var toolData = cornerstoneTools.getToolState(e.currentTarget, toolType);
if (!toolData) {
return;
}
// LT-29 Disable Target Measurements when pixel spacing is not available
if (!eventData.image.rowPixelSpacing || !eventData.image.columnPixelSpacing) {
return;
}
// we have tool data for this element - iterate over each one and draw it
var context = eventData.canvasContext.canvas.getContext('2d');
context.setTransform(1, 0, 0, 1, 0, 0);
var color;
var element = eventData.element;
var lineWidth = cornerstoneTools.toolStyle.getToolWidth();
var config = cornerstoneTools.bidirectional.getConfiguration();
for (var i = 0; i < toolData.data.length; i++) {
var data = toolData.data[i];
context.save();
// configurable shadow from CornerstoneTools
if (config && config.shadow) {
context.shadowColor = '#000000';
context.shadowOffsetX = 1;
context.shadowOffsetY = 1;
}
if (data.active) {
color = cornerstoneTools.toolColors.getActiveColor();
} else {
color = cornerstoneTools.toolColors.getToolColor();
}
// draw the line
var handleStartCanvas = cornerstone.pixelToCanvas(element, data.handles.start);
var handleEndCanvas = cornerstone.pixelToCanvas(element, data.handles.end);
var canvasTextLocation = cornerstone.pixelToCanvas(element, data.handles.textBox);
context.beginPath();
context.strokeStyle = color;
context.lineWidth = lineWidth;
context.moveTo(handleStartCanvas.x, handleStartCanvas.y);
context.lineTo(handleEndCanvas.x, handleEndCanvas.y);
context.stroke();
// Draw perpendicular line
drawPerpendicularLine(context, eventData, element, data, color, lineWidth);
// draw the handles
cornerstoneTools.drawHandles(context, eventData, data.handles, color);
//Draw linked line as dashed
context.beginPath();
context.strokeStyle = color;
context.lineWidth = lineWidth;
context.setLineDash([ 2, 3 ]);
// Set position of text
var perpendicularStartCanvas = cornerstone.pixelToCanvas(element, findDottedLinePosition(data));
context.moveTo(perpendicularStartCanvas.x, perpendicularStartCanvas.y);
context.lineTo(canvasTextLocation.x + 20, canvasTextLocation.y + 40);
context.stroke();
// Calculate the long axis length
var dx = (data.handles.start.x - data.handles.end.x) * (eventData.image.columnPixelSpacing || 1);
var dy = (data.handles.start.y - data.handles.end.y) * (eventData.image.rowPixelSpacing || 1);
var length = Math.sqrt(dx * dx + dy * dy);
// Calculate the short axis length
var wx = (data.handles.perpendicularStart.x - data.handles.perpendicularEnd.x) * (eventData.image.columnPixelSpacing || 1);
var wy = (data.handles.perpendicularStart.y - data.handles.perpendicularEnd.y) * (eventData.image.rowPixelSpacing || 1);
var width = Math.sqrt(wx * wx + wy * wy);
if (!width) {
width = 0;
}
// Draw the textbox
var suffix = ' mm';
if (!eventData.image.rowPixelSpacing || !eventData.image.columnPixelSpacing) {
suffix = ' pixels';
}
// Length is always longer than width
if (width > length) {
var tempW = width;
var tempL = length;
length = tempW;
width = tempL;
}
var lengthText = ' L ' + length.toFixed(1) + suffix;
var widthText = ' W ' + width.toFixed(1) + suffix;
var textLines = [ 'Target ' + data.lesionNumber, lengthText, widthText ];
var boundingBox = cornerstoneTools.drawTextBox(context,
textLines,
canvasTextLocation.x, canvasTextLocation.y, color);
data.handles.textBox.boundingBox = boundingBox;
// Set measurement text to show lesion table
data.longestDiameter = length.toFixed(1);
data.shortestDiameter = width.toFixed(1);
context.restore();
}
}
function doubleClickCallback(e, eventData) {
// Prevent other double click handlers from firing after this one
//e.stopImmediatePropagation();
var element = eventData.element;
var data;
function doneCallback(data, deleteTool) {
if (deleteTool === true) {
cornerstoneTools.removeToolState(element, toolType, data);
cornerstone.updateImage(element);
}
}
if (e.data && e.data.mouseButtonMask && !cornerstoneTools.isMouseButtonEnabled(eventData.which, e.data.mouseButtonMask)) {
return false;
}
var config = cornerstoneTools.bidirectional.getConfiguration();
var coords = eventData.currentPoints.canvas;
var toolData = cornerstoneTools.getToolState(element, toolType);
// now check to see if there is a handle we can move
if (!toolData) {
return false;
}
for (var i = 0; i < toolData.data.length; i++) {
data = toolData.data[i];
if (pointNearTool(element, data, coords)) {
data.active = true;
cornerstone.updateImage(element);
// Allow relabelling via a callback
config.changeLesionLocationCallback(data, eventData, doneCallback);
e.stopImmediatePropagation();
return false;
}
}
return false; // false = causes jquery to preventDefault() and stopPropagation() this event
}
// module exports
cornerstoneTools.bidirectional = cornerstoneTools.mouseButtonTool({
createNewMeasurement: createNewMeasurement,
addNewMeasurement: addNewMeasurement,
onImageRendered: onImageRendered,
pointNearTool: pointNearTool,
mouseDoubleClickCallback: doubleClickCallback,
mouseDownCallback: mouseDownCallback,
mouseMoveCallback: mouseMoveCallback,
toolType: toolType
});
cornerstoneTools.bidirectionalTouch = cornerstoneTools.touchTool({
createNewMeasurement: createNewMeasurement,
addNewMeasurement: addNewMeasurementTouch,
onImageRendered: onImageRendered,
pointNearTool: pointNearTool,
toolType: toolType
});
cornerstoneTools.bidirectional.setConfiguration(configuration);
})($, cornerstone, cornerstoneMath, cornerstoneTools);