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| import numpy as np import matplotlib.pyplot as plt import matplotlib.animation as animation
np.random.seed(19680801)
fig = plt.figure(figsize=(8, 8), facecolor='black')
ax = plt.subplot(111, frameon=False)
data = np.random.uniform(0, 1, (64, 75)) X = np.linspace(-1, 1, data.shape[-1]) G = 1.5 * np.exp(-4 * X ** 2)
lines = [] for i in range(len(data)): xscale = 1 - i / 200. lw = 1.5 - i / 100.0 line, = ax.plot(xscale * X, i + G * data[i], color="w", lw=lw) lines.append(line)
ax.set_ylim(-1, 70)
ax.set_xticks([]) ax.set_yticks([])
ax.text(0.5, 1.0, "MATPLOTLIB ", transform=ax.transAxes, ha="right", va="bottom", color="w", family="sans-serif", fontweight="light", fontsize=16) ax.text(0.5, 1.0, "UNCHAINED", transform=ax.transAxes, ha="left", va="bottom", color="w", family="sans-serif", fontweight="bold", fontsize=16)
def update(*args): data[:, 1:] = data[:, :-1]
data[:, 0] = np.random.uniform(0, 1, len(data))
for i in range(len(data)): lines[i].set_ydata(i + G * data[i])
return lines
anim = animation.FuncAnimation(fig, update, interval=10) plt.show()
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