plotter.py 9.3 KB

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  1. #!/usr/bin/env python3
  2. import math
  3. import matplotlib as mpl
  4. mpl.rc('font', **{'family': 'sans-serif', 'sans-serif': ['Helvetica']})
  5. mpl.rc('font', **{'family': 'serif', 'serif': ['Palatino']})
  6. mpl.rc('text', usetex=True)
  7. mpl.rc('savefig', dpi=120)
  8. def add_decorations(axes, luminosity, energy):
  9. cms_prelim = r'{\raggedright{}\textsf{\textbf{CMS}}\\ \emph{Preliminary}}'
  10. axes.text(0.01, 0.98, cms_prelim,
  11. horizontalalignment='left',
  12. verticalalignment='top',
  13. transform=axes.transAxes)
  14. lumi = ""
  15. energy_str = ""
  16. if luminosity is not None:
  17. lumi = r'${} \mathrm{{fb}}^{{-1}}$'.format(luminosity)
  18. if energy is not None:
  19. energy_str = r'({} TeV)'.format(energy)
  20. axes.text(1, 1, ' '.join([lumi, energy_str]),
  21. horizontalalignment='right',
  22. verticalalignment='bottom',
  23. transform=axes.transAxes)
  24. class StackHist:
  25. def __init__(self, title=""):
  26. self.title = title
  27. self.xlabel = ""
  28. self.ylabel = ""
  29. self.xlim = (None, None)
  30. self.ylim = (None, None)
  31. self.logx = False
  32. self.logy = False
  33. self.backgrounds = []
  34. self.signal = None
  35. self.signal_stack = True
  36. self.data = None
  37. @staticmethod
  38. def to_bin_list(th1):
  39. bins = []
  40. for i in range(th1.GetNbinsX()):
  41. center = th1.GetBinCenter(i + 1)
  42. width = th1.GetBinWidth(i + 1)
  43. content = th1.GetBinContent(i + 1)
  44. bins.append((center-width/2, center+width/2, content))
  45. return bins
  46. def add_mc_background(self, th1, label, lumi=None, plot_color=''):
  47. self.backgrounds.append((label, lumi, self.to_bin_list(th1), plot_color))
  48. def set_mc_signal(self, th1, label, lumi=None, stack=True, scale=1, plot_color=''):
  49. self.signal = (label, lumi, self.to_bin_list(th1), plot_color)
  50. self.signal_stack = stack
  51. self.signal_scale = scale
  52. def set_data(self, th1, lumi=None, plot_color=''):
  53. self.data = ('data', lumi, self.to_bin_list(th1), plot_color)
  54. self.luminosity = lumi
  55. def _verify_binning_match(self):
  56. bins_count = [len(bins) for _, _, bins, _ in self.backgrounds]
  57. if self.signal is not None:
  58. bins_count.append(len(self.signal[2]))
  59. if self.data is not None:
  60. bins_count.append(len(self.data[2]))
  61. n_bins = bins_count[0]
  62. if any(bin_count != n_bins for bin_count in bins_count):
  63. raise ValueError("all histograms must have the same number of bins")
  64. self.n_bins = n_bins
  65. def save(self, filename, **kwargs):
  66. import matplotlib.pyplot as plt
  67. plt.ioff()
  68. fig = plt.figure()
  69. ax = fig.gca()
  70. self.do_draw(ax, **kwargs)
  71. fig.savefig("figures/"+filename, transparent=True)
  72. plt.close(fig)
  73. plt.ion()
  74. def do_draw(self, axes):
  75. self.axeses = [axes]
  76. self._verify_binning_match()
  77. bottoms = [0]*self.n_bins
  78. if self.logx:
  79. axes.set_xscale('log')
  80. if self.logy:
  81. axes.set_yscale('log')
  82. def draw_bar(label, lumi, bins, plot_color, scale=1, stack=True, **kwargs):
  83. if stack:
  84. lefts = []
  85. widths = []
  86. heights = []
  87. for left, right, content in bins:
  88. lefts.append(left)
  89. widths.append(right-left)
  90. if lumi is not None:
  91. content *= self.luminosity/lumi
  92. content *= scale
  93. heights.append(content)
  94. axes.bar(lefts, heights, widths, bottoms, label=label, color=plot_color, **kwargs)
  95. for i, (_, _, content) in enumerate(bins):
  96. if lumi is not None:
  97. content *= self.luminosity/lumi
  98. content *= scale
  99. bottoms[i] += content
  100. else:
  101. xs = [bins[0][0] - (bins[0][1]-bins[0][0])/2]
  102. ys = [0]
  103. for left, right, content in bins:
  104. width2 = (right-left)/2
  105. if lumi is not None:
  106. content *= self.luminosity/lumi
  107. content *= scale
  108. xs.append(left-width2)
  109. ys.append(content)
  110. xs.append(right-width2)
  111. ys.append(content)
  112. xs.append(bins[-1][0] + (bins[-1][1]-bins[-1][0])/2)
  113. ys.append(0)
  114. axes.plot(xs, ys, label=label, color=plot_color, **kwargs)
  115. if self.signal is not None and self.signal_stack:
  116. label, lumi, bins, plot_color = self.signal
  117. if self.signal_scale != 1:
  118. label = r"{}$\times{:d}$".format(label, self.signal_scale)
  119. draw_bar(label, lumi, bins, plot_color, scale=self.signal_scale, hatch='/')
  120. for background in self.backgrounds:
  121. draw_bar(*background)
  122. if self.signal is not None and not self.signal_stack:
  123. # draw_bar(*self.signal, stack=False, color='k')
  124. label, lumi, bins, plot_color = self.signal
  125. if self.signal_scale != 1:
  126. label = r"{}$\times{:d}$".format(label, self.signal_scale)
  127. draw_bar(label, lumi, bins, plot_color, scale=self.signal_scale, stack=False)
  128. axes.set_title(self.title)
  129. axes.set_xlabel(self.xlabel)
  130. axes.set_ylabel(self.ylabel)
  131. axes.set_xlim(*self.xlim)
  132. # axes.set_ylim(*self.ylim)
  133. if self.logy:
  134. axes.set_ylim(None, math.exp(math.log(max(bottoms))*1.4))
  135. else:
  136. axes.set_ylim(None, max(bottoms)*1.2)
  137. axes.legend(frameon=True, ncol=2)
  138. add_decorations(axes, self.luminosity, self.energy)
  139. def draw(self, axes, save=False, filename=None, **kwargs):
  140. self.do_draw(axes, **kwargs)
  141. if save:
  142. if filename is None:
  143. filename = "".join(c for c in self.title if c.isalnum() or c in (' ._+-'))+".png"
  144. self.save(filename, **kwargs)
  145. class StackHistWithSignificance(StackHist):
  146. def __init__(self, *args, **kwargs):
  147. super().__init__(*args, **kwargs)
  148. def do_draw(self, axes, bin_significance=True, low_cut_significance=False, high_cut_significance=False):
  149. bottom_box, _, top_box = axes.get_position().splity(0.28, 0.30)
  150. axes.set_position(top_box)
  151. super().do_draw(axes)
  152. axes.set_xticks([])
  153. rhs_color = '#cc6600'
  154. bottom = axes.get_figure().add_axes(bottom_box)
  155. bottom_rhs = bottom.twinx()
  156. bgs = [0]*self.n_bins
  157. for (_, _, bins, _) in self.backgrounds:
  158. for i, (left, right, value) in enumerate(bins):
  159. bgs[i] += value
  160. sigs = [0]*self.n_bins
  161. if bin_significance:
  162. xs = []
  163. for i, (left, right, value) in enumerate(self.signal[2]):
  164. sigs[i] += value
  165. xs.append(left)
  166. xs, ys = zip(*[(x, sig/(sig+bg)) for x, sig, bg in zip(xs, sigs, bgs) if (sig+bg)>0])
  167. bottom.plot(xs, ys, '.k')
  168. if high_cut_significance:
  169. # s/(s+b) for events passing a minimum cut requirement
  170. min_bg = [sum(bgs[i:]) for i in range(self.n_bins)]
  171. min_sig = [sum(sigs[i:]) for i in range(self.n_bins)]
  172. min_xs, min_ys = zip(*[(x, sig/math.sqrt(sig+bg)) for x, sig, bg in zip(xs, min_sig, min_bg)
  173. if (sig+bg) > 0])
  174. bottom_rhs.plot(min_xs, min_ys, '->', color=rhs_color)
  175. if low_cut_significance:
  176. # s/(s+b) for events passing a maximum cut requirement
  177. max_bg = [sum(bgs[:i]) for i in range(self.n_bins)]
  178. max_sig = [sum(sigs[:i]) for i in range(self.n_bins)]
  179. max_xs, max_ys = zip(*[(x, sig/math.sqrt(sig+bg)) for x, sig, bg in zip(xs, max_sig, max_bg)
  180. if (sig+bg) > 0])
  181. bottom_rhs.plot(max_xs, max_ys, '-<', color=rhs_color)
  182. bottom.set_ylabel(r'$S/(S+B)$')
  183. bottom.set_xlim(axes.get_xlim())
  184. bottom.set_ylim((0, 1.1))
  185. if low_cut_significance or high_cut_significance:
  186. bottom_rhs.set_ylabel(r'$S/\sqrt{S+B}$')
  187. bottom_rhs.yaxis.label.set_color(rhs_color)
  188. bottom_rhs.tick_params(axis='y', colors=rhs_color, size=4, width=1.5)
  189. # bottom.grid()
  190. if __name__ == '__main__':
  191. import matplotlib.pyplot as plt
  192. from utils import ResultSet
  193. rs_TTZ = ResultSet("TTZ", "../data/TTZToLLNuNu_treeProducerSusyMultilepton_tree.root")
  194. rs_TTW = ResultSet("TTW", "../data/TTWToLNu_treeProducerSusyMultilepton_tree.root")
  195. rs_TTH = ResultSet("TTH", "../data/TTHnobb_mWCutfix_ext1_treeProducerSusyMultilepton_tree.root")
  196. rs_TTTT = ResultSet("TTTT", "../data/TTTT_ext_treeProducerSusyMultilepton_tree.root")
  197. sh = StackHist('B-Jet Multiplicity')
  198. sh.add_mc_background(rs_TTZ.b_jet_count, 'TTZ', lumi=40)
  199. sh.add_mc_background(rs_TTW.b_jet_count, 'TTW', lumi=40)
  200. sh.add_mc_background(rs_TTH.b_jet_count, 'TTH', lumi=40)
  201. sh.set_mc_signal(rs_TTTT.b_jet_count, 'TTTT', lumi=40, scale=10)
  202. sh.luminosity = 40
  203. sh.energy = 13
  204. sh.xlabel = 'B-Jet Count'
  205. sh.ylabel = r'\# Events'
  206. sh.xlim = (-.5, 9.5)
  207. sh.signal_stack = False
  208. fig = plt.figure()
  209. sh.draw(fig.gca())
  210. plt.show()
  211. # sh.add_data(rs_TTZ.b_jet_count, 'TTZ')