extended.js 6.1 KB

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  1. "use strict";
  2. Object.defineProperty(exports, "__esModule", { value: true });
  3. exports.ALL_Q = exports.DEFAULT_Q = void 0;
  4. var util_1 = require("@antv/util");
  5. var pretty_number_1 = require("./pretty-number");
  6. exports.DEFAULT_Q = [1, 5, 2, 2.5, 4, 3];
  7. exports.ALL_Q = [1, 5, 2, 2.5, 4, 3, 1.5, 7, 6, 8, 9];
  8. var eps = Number.EPSILON * 100;
  9. function mod(n, m) {
  10. return ((n % m) + m) % m;
  11. }
  12. function round(n) {
  13. return Math.round(n * 1e12) / 1e12;
  14. }
  15. function simplicity(q, Q, j, lmin, lmax, lstep) {
  16. var n = (0, util_1.size)(Q);
  17. var i = (0, util_1.indexOf)(Q, q);
  18. var v = 0;
  19. var m = mod(lmin, lstep);
  20. if ((m < eps || lstep - m < eps) && lmin <= 0 && lmax >= 0) {
  21. v = 1;
  22. }
  23. return 1 - i / (n - 1) - j + v;
  24. }
  25. function simplicityMax(q, Q, j) {
  26. var n = (0, util_1.size)(Q);
  27. var i = (0, util_1.indexOf)(Q, q);
  28. var v = 1;
  29. return 1 - i / (n - 1) - j + v;
  30. }
  31. function density(k, m, dMin, dMax, lMin, lMax) {
  32. var r = (k - 1) / (lMax - lMin);
  33. var rt = (m - 1) / (Math.max(lMax, dMax) - Math.min(dMin, lMin));
  34. return 2 - Math.max(r / rt, rt / r);
  35. }
  36. function densityMax(k, m) {
  37. if (k >= m) {
  38. return 2 - (k - 1) / (m - 1);
  39. }
  40. return 1;
  41. }
  42. function coverage(dMin, dMax, lMin, lMax) {
  43. var range = dMax - dMin;
  44. return 1 - (0.5 * (Math.pow((dMax - lMax), 2) + Math.pow((dMin - lMin), 2))) / Math.pow((0.1 * range), 2);
  45. }
  46. function coverageMax(dMin, dMax, span) {
  47. var range = dMax - dMin;
  48. if (span > range) {
  49. var half = (span - range) / 2;
  50. return 1 - Math.pow(half, 2) / Math.pow((0.1 * range), 2);
  51. }
  52. return 1;
  53. }
  54. function legibility() {
  55. return 1;
  56. }
  57. /**
  58. * An Extension of Wilkinson's Algorithm for Position Tick Labels on Axes
  59. * https://www.yuque.com/preview/yuque/0/2019/pdf/185317/1546999150858-45c3b9c2-4e86-4223-bf1a-8a732e8195ed.pdf
  60. * @param dMin 最小值
  61. * @param dMax 最大值
  62. * @param m tick个数
  63. * @param onlyLoose 是否允许扩展min、max,不绝对强制,例如[3, 97]
  64. * @param Q nice numbers集合
  65. * @param w 四个优化组件的权重
  66. */
  67. function extended(dMin, dMax, n, onlyLoose, Q, w) {
  68. if (n === void 0) { n = 5; }
  69. if (onlyLoose === void 0) { onlyLoose = true; }
  70. if (Q === void 0) { Q = exports.DEFAULT_Q; }
  71. if (w === void 0) { w = [0.25, 0.2, 0.5, 0.05]; }
  72. // 处理小于 0 和小数的 tickCount
  73. var m = n < 0 ? 0 : Math.round(n);
  74. // nan 也会导致异常
  75. if (Number.isNaN(dMin) || Number.isNaN(dMax) || typeof dMin !== 'number' || typeof dMax !== 'number' || !m) {
  76. return {
  77. min: 0,
  78. max: 0,
  79. ticks: [],
  80. };
  81. }
  82. // js 极大值极小值问题,差值小于 1e-15 会导致计算出错
  83. if (dMax - dMin < 1e-15 || m === 1) {
  84. return {
  85. min: dMin,
  86. max: dMax,
  87. ticks: [dMin],
  88. };
  89. }
  90. var best = {
  91. score: -2,
  92. lmin: 0,
  93. lmax: 0,
  94. lstep: 0,
  95. };
  96. var j = 1;
  97. while (j < Infinity) {
  98. for (var i = 0; i < Q.length; i += 1) {
  99. var q = Q[i];
  100. var sm = simplicityMax(q, Q, j);
  101. if (w[0] * sm + w[1] + w[2] + w[3] < best.score) {
  102. j = Infinity;
  103. break;
  104. }
  105. var k = 2;
  106. while (k < Infinity) {
  107. var dm = densityMax(k, m);
  108. if (w[0] * sm + w[1] + w[2] * dm + w[3] < best.score) {
  109. break;
  110. }
  111. var delta = (dMax - dMin) / (k + 1) / j / q;
  112. var z = Math.ceil(Math.log10(delta));
  113. while (z < Infinity) {
  114. var step = j * q * Math.pow(10, z);
  115. var cm = coverageMax(dMin, dMax, step * (k - 1));
  116. if (w[0] * sm + w[1] * cm + w[2] * dm + w[3] < best.score) {
  117. break;
  118. }
  119. var minStart = Math.floor(dMax / step) * j - (k - 1) * j;
  120. var maxStart = Math.ceil(dMin / step) * j;
  121. if (minStart <= maxStart) {
  122. var count = maxStart - minStart;
  123. for (var i_1 = 0; i_1 <= count; i_1 += 1) {
  124. var start = minStart + i_1;
  125. var lMin = start * (step / j);
  126. var lMax = lMin + step * (k - 1);
  127. var lStep = step;
  128. var s = simplicity(q, Q, j, lMin, lMax, lStep);
  129. var c = coverage(dMin, dMax, lMin, lMax);
  130. var g = density(k, m, dMin, dMax, lMin, lMax);
  131. var l = legibility();
  132. var score = w[0] * s + w[1] * c + w[2] * g + w[3] * l;
  133. if (score > best.score && (!onlyLoose || (lMin <= dMin && lMax >= dMax))) {
  134. best.lmin = lMin;
  135. best.lmax = lMax;
  136. best.lstep = lStep;
  137. best.score = score;
  138. }
  139. }
  140. }
  141. z += 1;
  142. }
  143. k += 1;
  144. }
  145. }
  146. j += 1;
  147. }
  148. // 处理精度问题,保证这三个数没有精度问题
  149. var lmax = (0, pretty_number_1.prettyNumber)(best.lmax);
  150. var lmin = (0, pretty_number_1.prettyNumber)(best.lmin);
  151. var lstep = (0, pretty_number_1.prettyNumber)(best.lstep);
  152. // 加 round 是为处理 extended(0.94, 1, 5)
  153. // 保证生成的 tickCount 没有精度问题
  154. var tickCount = Math.floor(round((lmax - lmin) / lstep)) + 1;
  155. var ticks = new Array(tickCount);
  156. // 少用乘法:防止出现 -1.2 + 1.2 * 3 = 2.3999999999999995 的情况
  157. ticks[0] = (0, pretty_number_1.prettyNumber)(lmin);
  158. for (var i = 1; i < tickCount; i++) {
  159. ticks[i] = (0, pretty_number_1.prettyNumber)(ticks[i - 1] + lstep);
  160. }
  161. return {
  162. min: Math.min(dMin, (0, util_1.head)(ticks)),
  163. max: Math.max(dMax, (0, util_1.last)(ticks)),
  164. ticks: ticks,
  165. };
  166. }
  167. exports.default = extended;
  168. //# sourceMappingURL=extended.js.map