nv.models.line = function() { //============================================================ // Public Variables with Default Settings //------------------------------------------------------------ var scatter = nv.models.scatter() ; var margin = {top: 0, right: 0, bottom: 0, left: 0} , width = 960 , height = 500 , color = nv.utils.defaultColor() // a function that returns a color , getX = function(d) { return d.x } // accessor to get the x value from a data point , getY = function(d) { return d.y } // accessor to get the y value from a data point , defined = function(d,i) { return !isNaN(getY(d,i)) && getY(d,i) !== null } // allows a line to be not continuous when it is not defined , isArea = function(d) { return d.area } // decides if a line is an area or just a line , clipEdge = false // if true, masks lines within x and y scale , x //can be accessed via chart.xScale() , y //can be accessed via chart.yScale() , interpolate = "linear" // controls the line interpolation ; scatter .size(16) // default size .sizeDomain([16,256]) //set to speed up calculation, needs to be unset if there is a custom size accessor ; //============================================================ //============================================================ // Private Variables //------------------------------------------------------------ var x0, y0 //used to store previous scales ; //============================================================ function chart(selection) { selection.each(function(data) { var availableWidth = width - margin.left - margin.right, availableHeight = height - margin.top - margin.bottom, container = d3.select(this); //------------------------------------------------------------ // Setup Scales x = scatter.xScale(); y = scatter.yScale(); x0 = x0 || x; y0 = y0 || y; //------------------------------------------------------------ //------------------------------------------------------------ // Setup containers and skeleton of chart var wrap = container.selectAll('g.nv-wrap.nv-line').data([data]); var wrapEnter = wrap.enter().append('g').attr('class', 'nvd3 nv-wrap nv-line'); var defsEnter = wrapEnter.append('defs'); var gEnter = wrapEnter.append('g'); var g = wrap.select('g') gEnter.append('g').attr('class', 'nv-groups'); gEnter.append('g').attr('class', 'nv-scatterWrap'); wrap.attr('transform', 'translate(' + margin.left + ',' + margin.top + ')'); //------------------------------------------------------------ scatter .width(availableWidth) .height(availableHeight) var scatterWrap = wrap.select('.nv-scatterWrap'); //.datum(data); // Data automatically trickles down from the wrap d3.transition(scatterWrap).call(scatter); defsEnter.append('clipPath') .attr('id', 'nv-edge-clip-' + scatter.id()) .append('rect'); wrap.select('#nv-edge-clip-' + scatter.id() + ' rect') .attr('width', availableWidth) .attr('height', availableHeight); g .attr('clip-path', clipEdge ? 'url(#nv-edge-clip-' + scatter.id() + ')' : ''); scatterWrap .attr('clip-path', clipEdge ? 'url(#nv-edge-clip-' + scatter.id() + ')' : ''); var groups = wrap.select('.nv-groups').selectAll('.nv-group') .data(function(d) { return d }, function(d) { return d.key }); groups.enter().append('g') .style('stroke-opacity', 1e-6) .style('fill-opacity', 1e-6); d3.transition(groups.exit()) .style('stroke-opacity', 1e-6) .style('fill-opacity', 1e-6) .remove(); groups .attr('class', function(d,i) { return 'nv-group nv-series-' + i }) .classed('hover', function(d) { return d.hover }) .style('fill', function(d,i){ return color(d, i) }) .style('stroke', function(d,i){ return color(d, i)}); d3.transition(groups) .style('stroke-opacity', 1) .style('fill-opacity', .5); var areaPaths = groups.selectAll('path.nv-area') .data(function(d) { return isArea(d) ? [d] : [] }); // this is done differently than lines because I need to check if series is an area areaPaths.enter().append('path') .attr('class', 'nv-area') .attr('d', function(d) { return d3.svg.area() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x0(getX(d,i))) }) .y0(function(d,i) { return nv.utils.NaNtoZero(y0(getY(d,i))) }) .y1(function(d,i) { return y0( y.domain()[0] <= 0 ? y.domain()[1] >= 0 ? 0 : y.domain()[1] : y.domain()[0] ) }) //.y1(function(d,i) { return y0(0) }) //assuming 0 is within y domain.. may need to tweak this .apply(this, [d.values]) }); d3.transition(groups.exit().selectAll('path.nv-area')) .attr('d', function(d) { return d3.svg.area() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x(getX(d,i))) }) .y0(function(d,i) { return nv.utils.NaNtoZero(y(getY(d,i))) }) .y1(function(d,i) { return y( y.domain()[0] <= 0 ? y.domain()[1] >= 0 ? 0 : y.domain()[1] : y.domain()[0] ) }) //.y1(function(d,i) { return y0(0) }) //assuming 0 is within y domain.. may need to tweak this .apply(this, [d.values]) }); d3.transition(areaPaths) .attr('d', function(d) { return d3.svg.area() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x(getX(d,i))) }) .y0(function(d,i) { return nv.utils.NaNtoZero(y(getY(d,i))) }) .y1(function(d,i) { return y( y.domain()[0] <= 0 ? y.domain()[1] >= 0 ? 0 : y.domain()[1] : y.domain()[0] ) }) //.y1(function(d,i) { return y0(0) }) //assuming 0 is within y domain.. may need to tweak this .apply(this, [d.values]) }); var linePaths = groups.selectAll('path.nv-line') .data(function(d) { return [d.values] }); linePaths.enter().append('path') .attr('class', 'nv-line') .attr('d', d3.svg.line() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x0(getX(d,i))) }) .y(function(d,i) { return nv.utils.NaNtoZero(y0(getY(d,i))) }) ); d3.transition(groups.exit().selectAll('path.nv-line')) .attr('d', d3.svg.line() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x(getX(d,i))) }) .y(function(d,i) { return nv.utils.NaNtoZero(y(getY(d,i))) }) ); d3.transition(linePaths) .attr('d', d3.svg.line() .interpolate(interpolate) .defined(defined) .x(function(d,i) { return nv.utils.NaNtoZero(x(getX(d,i))) }) .y(function(d,i) { return nv.utils.NaNtoZero(y(getY(d,i))) }) ); //store old scales for use in transitions on update x0 = x.copy(); y0 = y.copy(); }); return chart; } //============================================================ // Expose Public Variables //------------------------------------------------------------ chart.dispatch = scatter.dispatch; chart.scatter = scatter; d3.rebind(chart, scatter, 'id', 'interactive', 'size', 'xScale', 'yScale', 'zScale', 'xDomain', 'yDomain', 'sizeDomain', 'forceX', 'forceY', 'forceSize', 'clipVoronoi', 'useVoronoi', 'clipRadius', 'padData'); chart.margin = function(_) { if (!arguments.length) return margin; margin.top = typeof _.top != 'undefined' ? _.top : margin.top; margin.right = typeof _.right != 'undefined' ? _.right : margin.right; margin.bottom = typeof _.bottom != 'undefined' ? _.bottom : margin.bottom; margin.left = typeof _.left != 'undefined' ? _.left : margin.left; return chart; }; chart.width = function(_) { if (!arguments.length) return width; width = _; return chart; }; chart.height = function(_) { if (!arguments.length) return height; height = _; return chart; }; chart.x = function(_) { if (!arguments.length) return getX; getX = _; scatter.x(_); return chart; }; chart.y = function(_) { if (!arguments.length) return getY; getY = _; scatter.y(_); return chart; }; chart.clipEdge = function(_) { if (!arguments.length) return clipEdge; clipEdge = _; return chart; }; chart.color = function(_) { if (!arguments.length) return color; color = nv.utils.getColor(_); scatter.color(color); return chart; }; chart.interpolate = function(_) { if (!arguments.length) return interpolate; interpolate = _; return chart; }; chart.defined = function(_) { if (!arguments.length) return defined; defined = _; return chart; }; chart.isArea = function(_) { if (!arguments.length) return isArea; isArea = d3.functor(_); return chart; }; //============================================================ return chart; }