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import re |
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import numpy as np |
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channelmap = { |
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'Xrotation': 'x', |
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'Yrotation': 'y', |
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'Zrotation': 'z' |
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} |
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channelmap_inv = { |
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'x': 'Xrotation', |
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'y': 'Yrotation', |
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'z': 'Zrotation', |
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} |
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ordermap = { |
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'x': 0, |
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'y': 1, |
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'z': 2, |
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} |
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def load(filename:str, order:str=None) -> dict: |
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"""Loads a BVH file. |
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Args: |
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filename (str): Path to the BVH file. |
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order (str): The order of the rotation channels. (i.e."xyz") |
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Returns: |
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dict: A dictionary containing the following keys: |
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* names (list)(jnum): The names of the joints. |
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* parents (list)(jnum): The parent indices. |
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* offsets (np.ndarray)(jnum, 3): The offsets of the joints. |
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* rotations (np.ndarray)(fnum, jnum, 3) : The local coordinates of rotations of the joints. |
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* positions (np.ndarray)(fnum, jnum, 3) : The positions of the joints. |
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* order (str): The order of the channels. |
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* frametime (float): The time between two frames. |
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""" |
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f = open(filename, "r") |
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i = 0 |
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active = -1 |
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end_site = False |
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names = [] |
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offsets = np.array([]).reshape((0, 3)) |
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parents = np.array([], dtype=int) |
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for line in f: |
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if "HIERARCHY" in line: continue |
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if "MOTION" in line: continue |
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rmatch = re.match(r"ROOT (\w+)", line) |
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if rmatch: |
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names.append(rmatch.group(1)) |
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offsets = np.append(offsets, np.array([[0, 0, 0]]), axis=0) |
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parents = np.append(parents, active) |
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active = (len(parents) - 1) |
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continue |
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if "{" in line: continue |
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if "}" in line: |
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if end_site: |
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end_site = False |
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else: |
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active = parents[active] |
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continue |
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offmatch = re.match(r"\s*OFFSET\s+([\-\d\.e]+)\s+([\-\d\.e]+)\s+([\-\d\.e]+)", line) |
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if offmatch: |
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if not end_site: |
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offsets[active] = np.array([list(map(float, offmatch.groups()))]) |
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continue |
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chanmatch = re.match(r"\s*CHANNELS\s+(\d+)", line) |
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if chanmatch: |
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channels = int(chanmatch.group(1)) |
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if order is None: |
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channelis = 0 if channels == 3 else 3 |
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channelie = 3 if channels == 3 else 6 |
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parts = line.split()[2 + channelis:2 + channelie] |
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if any([p not in channelmap for p in parts]): |
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continue |
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order = "".join([channelmap[p] for p in parts]) |
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continue |
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jmatch = re.match("\s*JOINT\s+(\w+)", line) |
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if jmatch: |
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names.append(jmatch.group(1)) |
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offsets = np.append(offsets, np.array([[0, 0, 0]]), axis=0) |
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parents = np.append(parents, active) |
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active = (len(parents) - 1) |
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continue |
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if "End Site" in line: |
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end_site = True |
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continue |
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fmatch = re.match("\s*Frames:\s+(\d+)", line) |
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if fmatch: |
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fnum = int(fmatch.group(1)) |
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positions = offsets[None].repeat(fnum, axis=0) |
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rotations = np.zeros((fnum, len(offsets), 3)) |
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continue |
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fmatch = re.match("\s*Frame Time:\s+([\d\.]+)", line) |
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if fmatch: |
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frametime = float(fmatch.group(1)) |
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continue |
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dmatch = line.strip().split(' ') |
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if dmatch: |
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data_block = np.array(list(map(float, dmatch))) |
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N = len(parents) |
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fi = i |
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if channels == 3: |
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positions[fi, 0:1] = data_block[0:3] |
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rotations[fi, :] = data_block[3:].reshape(N, 3) |
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elif channels == 6: |
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data_block = data_block.reshape(N, 6) |
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positions[fi, :] = data_block[:, 0:3] |
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rotations[fi, :] = data_block[:, 3:6] |
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elif channels == 9: |
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positions[fi, 0] = data_block[0:3] |
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data_block = data_block[3:].reshape(N - 1, 9) |
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rotations[fi, 1:] = data_block[:, 3:6] |
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positions[fi, 1:] += data_block[:, 0:3] * data_block[:, 6:9] |
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else: |
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raise Exception("Too many channels! %i" % channels) |
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i += 1 |
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f.close() |
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return { |
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'rotations': rotations, |
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'positions': positions, |
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'offsets': offsets, |
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'parents': parents, |
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'names': names, |
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'order': order, |
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'frametime': frametime |
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} |
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def save_joint(f, data, t, i, save_order, order='zyx', save_positions=False): |
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save_order.append(i) |
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f.write("%sJOINT %s\n" % (t, data['names'][i])) |
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f.write("%s{\n" % t) |
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t += '\t' |
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f.write("%sOFFSET %f %f %f\n" % (t, data['offsets'][i,0], data['offsets'][i,1], data['offsets'][i,2])) |
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if save_positions: |
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f.write("%sCHANNELS 6 Xposition Yposition Zposition %s %s %s \n" % (t, |
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channelmap_inv[order[0]], channelmap_inv[order[1]], channelmap_inv[order[2]])) |
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else: |
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f.write("%sCHANNELS 3 %s %s %s\n" % (t, |
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channelmap_inv[order[0]], channelmap_inv[order[1]], channelmap_inv[order[2]])) |
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end_site = True |
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for j in range(len(data['parents'])): |
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if data['parents'][j] == i: |
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t = save_joint(f, data, t, j, save_order, order=order, save_positions=save_positions) |
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end_site = False |
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if end_site: |
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f.write("%sEnd Site\n" % t) |
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f.write("%s{\n" % t) |
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t += '\t' |
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f.write("%sOFFSET %f %f %f\n" % (t, 0.0, 0.0, 0.0)) |
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t = t[:-1] |
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f.write("%s}\n" % t) |
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t = t[:-1] |
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f.write("%s}\n" % t) |
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return t |
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def save(filename, data, save_positions=False): |
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""" Save a joint hierarchy to a file. |
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Args: |
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filename (str): The output will save on the bvh file. |
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data (dict): The data to save.(rotations, positions, offsets, parents, names, order, frametime) |
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save_positions (bool): Whether to save all of joint positions on MOTION. (False is recommended.) |
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""" |
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order = data['order'] |
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frametime = data['frametime'] |
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with open(filename, 'w') as f: |
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t = "" |
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f.write("%sHIERARCHY\n" % t) |
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f.write("%sROOT %s\n" % (t, data['names'][0])) |
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f.write("%s{\n" % t) |
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t += '\t' |
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f.write("%sOFFSET %f %f %f\n" % (t, data['offsets'][0,0], data['offsets'][0,1], data['offsets'][0,2]) ) |
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f.write("%sCHANNELS 6 Xposition Yposition Zposition %s %s %s \n" % |
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(t, channelmap_inv[order[0]], channelmap_inv[order[1]], channelmap_inv[order[2]])) |
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save_order = [0] |
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for i in range(len(data['parents'])): |
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if data['parents'][i] == 0: |
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t = save_joint(f, data, t, i, save_order, order=order, save_positions=save_positions) |
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t = t[:-1] |
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f.write("%s}\n" % t) |
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rots, poss = data['rotations'], data['positions'] |
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f.write("MOTION\n") |
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f.write("Frames: %i\n" % len(rots)); |
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f.write("Frame Time: %f\n" % frametime); |
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for i in range(rots.shape[0]): |
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for j in save_order: |
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if save_positions or j == 0: |
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f.write("%f %f %f %f %f %f " % ( |
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poss[i,j,0], poss[i,j,1], poss[i,j,2], |
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rots[i,j,0], rots[i,j,1], rots[i,j,2])) |
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else: |
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f.write("%f %f %f " % ( |
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rots[i,j,0], rots[i,j,1], rots[i,j,2])) |
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f.write("\n") |