echart.js 7.7 KB

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  1. /**
  2. * 绘制3d图
  3. * @param pieData 总数据
  4. * @param internalDiameterRatio:透明的空心占比
  5. * @param distance 视角到主体的距离
  6. * @param alpha 旋转角度
  7. * @param pieHeight 立体的高度
  8. * @param opacity 饼或者环的透明度
  9. */
  10. const getPie3D = (pieData, internalDiameterRatio, distance, alpha, pieHeight, opacity = 1) => {
  11. const series = []
  12. let sumValue = 0
  13. let startValue = 0
  14. let endValue = 0
  15. let legendData = []
  16. let legendBfb = []
  17. const k = 1 - internalDiameterRatio //设置是否镂空
  18. pieData.sort((a, b) => {
  19. return b.value - a.value
  20. })
  21. // 为每一个饼图数据,生成一个 series-surface 配置
  22. for (let i = 0; i < pieData.length; i++) {
  23. // 判断所有数据是否均为0,如果是0,则设置一个最小值,防止出现扇形的面积为0的情况
  24. if (pieData.every((item) => item.value === 0)) {
  25. sumValue += 1
  26. } else {
  27. sumValue += pieData[i].value
  28. }
  29. const seriesItem = {
  30. name: typeof pieData[i].name === 'undefined' ? `series${i}` : pieData[i].name,
  31. type: 'surface',
  32. parametric: true,
  33. wireframe: {
  34. show: false
  35. },
  36. pieData: pieData[i],
  37. pieStatus: {
  38. selected: false,
  39. hovered: false,
  40. k: k
  41. }
  42. }
  43. if (typeof pieData[i].itemStyle !== 'undefined') {
  44. const itemStyle = {}
  45. itemStyle.color = typeof pieData[i].itemStyle.color !== 'undefined' ? pieData[i].itemStyle.color : opacity
  46. itemStyle.opacity = typeof pieData[i].itemStyle.opacity !== 'undefined' ? pieData[i].itemStyle.opacity : opacity
  47. seriesItem.itemStyle = itemStyle
  48. }
  49. series.push(seriesItem)
  50. }
  51. // 使用上一次遍历时,计算出的数据和 sumValue,调用 getParametricEquation 函数,
  52. // 向每个 series-surface 传入不同的参数方程 series-surface.parametricEquation,也就是实现每一个扇形。
  53. legendData = []
  54. legendBfb = []
  55. for (let i = 0; i < series.length; i++) {
  56. if (pieData.every((item) => item.value === 0)) {
  57. endValue = startValue + 1
  58. } else {
  59. endValue = startValue + series[i].pieData.value
  60. }
  61. series[i].pieData.startRatio = startValue / sumValue
  62. series[i].pieData.endRatio = endValue / sumValue
  63. series[i].parametricEquation = getParametricEquation(series[i].pieData.startRatio, series[i].pieData.endRatio, false, false, k, series[i].pieData.value)
  64. startValue = endValue
  65. const bfb = fomatFloat(series[i].pieData.value / sumValue, 4)
  66. legendData.push({
  67. name: series[i].name,
  68. value: bfb
  69. })
  70. legendBfb.push({
  71. name: series[i].name,
  72. value: bfb
  73. })
  74. }
  75. const boxHeight = getHeight3D(series, pieHeight) // 通过pieHeight设定3d饼/环的高度,单位是px
  76. // 准备待返回的配置项,把准备好的 legendData、series 传入。
  77. const option = {
  78. title: {
  79. text: 'Referer of a Website',
  80. subtext: 'Fake Data',
  81. left: 'center',
  82. top: '10%',
  83. textStyle: {
  84. color: '#fff' // 将文字颜色设置为白色
  85. },
  86. subtextStyle: {
  87. color: '#fff' // 将 "Fake Data" 文字颜色设置为白色
  88. }
  89. },
  90. legend: {
  91. show: true,
  92. data: legendData,
  93. orient: 'vertical',
  94. right: '35%',
  95. top: 'center',
  96. itemGap: 10,
  97. icon: 'circle',
  98. formatter: function (param) {
  99. const item = legendBfb.filter((item) => item.name === param)[0]
  100. return ` ${item.name}`
  101. },
  102. textStyle: {
  103. color: '#fff'
  104. }
  105. },
  106. labelLine: {
  107. show: true,
  108. lineStyle: {
  109. color: '#fff'
  110. }
  111. },
  112. label: {
  113. show: true,
  114. position: 'outside',
  115. formatter: '{b} \n{c} {d}%'
  116. },
  117. tooltip: {
  118. backgroundColor: '#033b77',
  119. borderColor: '#21f2c4',
  120. textStyle: {
  121. color: '#fff',
  122. fontSize: 13
  123. },
  124. formatter: (params) => {
  125. if (params.seriesName !== 'mouseoutSeries' && params.seriesName !== '信用评价') {
  126. const bfb = ((option.series[params.seriesIndex].pieData.endRatio - option.series[params.seriesIndex].pieData.startRatio) * 100).toFixed(2)
  127. return `${params.seriesName}<br/>` + `<span style="display:inline-block;margin-right:5px;border-radius:10px;width:10px;height:10px;background-color:${params.color};"></span>` + `${bfb}%`
  128. }
  129. }
  130. },
  131. xAxis3D: {
  132. min: -1,
  133. max: 1
  134. },
  135. yAxis3D: {
  136. min: -1,
  137. max: 1
  138. },
  139. zAxis3D: {
  140. min: -1,
  141. max: 1
  142. },
  143. grid3D: {
  144. show: false,
  145. boxHeight: boxHeight, // 圆环的高度
  146. viewControl: {
  147. // 3d效果可以放大、旋转等,请自己去查看官方配置
  148. alpha, // 角度
  149. distance: 250, // 调整视角到主体的距离,类似调整zoom
  150. rotateSensitivity: 0, // 设置为0无法旋转
  151. zoomSensitivity: 0, // 设置为0无法缩放
  152. panSensitivity: 0, // 设置为0无法平移
  153. autoRotate: false // 自动旋转
  154. }
  155. },
  156. series: series
  157. }
  158. return option
  159. }
  160. /**
  161. * 生成扇形的曲面参数方程,用于 series-surface.parametricEquation
  162. */
  163. const getParametricEquation = (startRatio, endRatio, isSelected, isHovered, k, h) => {
  164. startRatio = startRatio !== undefined ? startRatio : 0
  165. endRatio = endRatio !== undefined ? endRatio : 1
  166. // 计算
  167. const midRatio = (startRatio + endRatio) / 2
  168. const startRadian = startRatio * Math.PI * 2
  169. const endRadian = endRatio * Math.PI * 2
  170. const midRadian = midRatio * Math.PI * 2
  171. // 如果只有一个扇形,则不实现选中效果。
  172. if (startRatio === 0 && endRatio === 1) {
  173. isSelected = false
  174. }
  175. // 通过扇形内径/外径的值,换算出辅助参数 k(默认值 1/3)
  176. k = typeof k !== 'undefined' ? k : 1 / 3
  177. // 计算选中效果分别在 x 轴、y 轴方向上的位移(未选中,则位移均为 0)
  178. const offsetX = isSelected ? Math.cos(midRadian) * 0.1 : 0
  179. const offsetY = isSelected ? Math.sin(midRadian) * 0.1 : 0
  180. // 计算高亮效果的放大比例(未高亮,则比例为 1)
  181. const hoverRate = isHovered ? 1.05 : 1
  182. // 返回曲面参数方程
  183. return {
  184. u: {
  185. min: -Math.PI,
  186. max: Math.PI * 3,
  187. step: Math.PI / 32
  188. },
  189. v: {
  190. min: 0,
  191. max: Math.PI * 2,
  192. step: Math.PI / 20
  193. },
  194. x: function (u, v) {
  195. if (u < startRadian) {
  196. return offsetX + Math.cos(startRadian) * (1 + Math.cos(v) * k) * hoverRate
  197. }
  198. if (u > endRadian) {
  199. return offsetX + Math.cos(endRadian) * (1 + Math.cos(v) * k) * hoverRate
  200. }
  201. return offsetX + Math.cos(u) * (1 + Math.cos(v) * k) * hoverRate
  202. },
  203. y: function (u, v) {
  204. if (u < startRadian) {
  205. return offsetY + Math.sin(startRadian) * (1 + Math.cos(v) * k) * hoverRate
  206. }
  207. if (u > endRadian) {
  208. return offsetY + Math.sin(endRadian) * (1 + Math.cos(v) * k) * hoverRate
  209. }
  210. return offsetY + Math.sin(u) * (1 + Math.cos(v) * k) * hoverRate
  211. },
  212. z: function (u, v) {
  213. if (u < -Math.PI * 0.5) {
  214. return Math.sin(u)
  215. }
  216. if (u > Math.PI * 2.5) {
  217. return Math.sin(u) * h * 0.1
  218. }
  219. return Math.sin(v) > 0 ? 1 * h * 0.1 : -1
  220. }
  221. }
  222. }
  223. /**
  224. * 获取3d丙图的最高扇区的高度
  225. */
  226. const getHeight3D = (series, height) => {
  227. series.sort((a, b) => {
  228. return b.pieData.value - a.pieData.value
  229. })
  230. return (height * 25) / series[0].pieData.value
  231. }
  232. /**
  233. * 格式化浮点数
  234. */
  235. const fomatFloat = (num, n) => {
  236. let f = parseFloat(num)
  237. if (isNaN(f)) {
  238. return false
  239. }
  240. f = Math.round(num * Math.pow(10, n)) / Math.pow(10, n) // n 幂
  241. let s = f.toString()
  242. let rs = s.indexOf('.')
  243. // 判定如果是整数,增加小数点再补0
  244. if (rs < 0) {
  245. rs = s.length
  246. s += '.'
  247. }
  248. while (s.length <= rs + n) {
  249. s += '0'
  250. }
  251. return s
  252. }
  253. export { getPie3D, getParametricEquation }