annotate data_generation/amt/amt_generate.py @ 438:a6d339033d03

added AMT
author Yoshua Bengio <bengioy@iro.umontreal.ca>
date Mon, 03 May 2010 07:46:18 -0400
parents 8973abe35a9d
children
rev   line source
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1 import numpy, Image
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2 from pylearn.io import filetensor as ft
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3
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4
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5 DATAPATH = '/data/lisa/data/'
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6 DATASET = 'nist' # nist, p07, pnist
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7 NUM_BATCHES = 250
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8 BATCH_SIZE = 10
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9 IMGSHP = (32,32)
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10 WHITE_SPACE_THICKNESS = 1
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11 DATASET_PATH = { 'nist' : [ DATAPATH + 'nist/by_class/all/all_test_data.ft',
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12 DATAPATH + 'nist/by_class/all/all_test_labels.ft' ],
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13 'p07' : [ DATAPATH + 'ift6266h10/data/P07_test_data.ft',
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14 DATAPATH + 'ift6266h10/data/P07_test_labels.ft' ],
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15 'pnist': [ DATAPATH + 'ift6266h10/data/PNIST07_test_data.ft',
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16 DATAPATH + 'ift6266h10/data/PNIST07_test_labels.ft' ] }
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17
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18 def generate_batches():
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19 # Generate a directory containing NUM_BATCHES of DATASET
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20 total = NUM_BATCHES * BATCH_SIZE
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21
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22 # Create a matrix of random integers within the range
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23 # [0,lenght_dataset-1]
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24
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25 f = open(DATASET_PATH[DATASET][0])
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26 g = open(DATASET_PATH[DATASET][1])
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27 test_data = ft.read(f)
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28 test_labels = ft.read(g)
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29
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30 resulting_data = numpy.zeros((total,IMGSHP[0]*IMGSHP[1]))
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31 resulting_labels = numpy.zeros((total,))
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32 f.close();g.close()
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33
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34 ds_size = len(test_data)
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35 rand_seq = numpy.random.random_integers(ds_size-1, size=(NUM_BATCHES,BATCH_SIZE))
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36
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37 for i in range(NUM_BATCHES):
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38 for j in range(BATCH_SIZE):
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39 resulting_data[i*BATCH_SIZE+j]=test_data[rand_seq[i,j]]
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40 resulting_labels[i*BATCH_SIZE+j] = test_labels[rand_seq[i,j]]
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41 image = generate_image(resulting_data[i*BATCH_SIZE:(i+1)*BATCH_SIZE])
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42 text = generate_labels(resulting_labels[i*BATCH_SIZE:(i+1)*BATCH_SIZE], rand_seq[i])
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43 filename = DATASET + '_' + str("%04d" % int(i+1))
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44 image.save(filename+'.jpeg')
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45 save_text(text,filename)
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46
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47 ft_name = 'AMT_'+DATASET+'_'+str(NUM_BATCHES)
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48 generate_ft_file(resulting_data,resulting_labels,ft_name)
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49
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50 def save_text(text,filename):
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51 f = open(filename+'.txt', 'w')
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52 f.write(text)
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53 f.close()
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54 def generate_ft_file(data,labels,ft_name):
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55 fdata = open(ft_name+'_data.ft','w')
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56 flabels = open(ft_name+'_labels.ft','w')
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57 ft.write(fdata,data)
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58 ft.write(flabels,labels)
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59 fdata.close();flabels.close()
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60
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61 def generate_image(seq):
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62 all_images = []
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63
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64 white_space = numpy.asarray(numpy.zeros((IMGSHP[0],WHITE_SPACE_THICKNESS))+255.,dtype='uint8')
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65
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66 for i in range(len(seq)):
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67 all_images += [numpy.asarray(seq[i].reshape((IMGSHP)),dtype='uint8')]
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69 all_images_stacked = numpy.hstack(numpy.asarray([numpy.hstack((image,white_space)) for image in all_images]))
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70 return Image.fromarray(all_images_stacked)
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71
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72 def generate_labels(seq, indexes):
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73 return str(seq) + '\n' + str(indexes)
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74
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75 if __name__ =='__main__':
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76 print 'Starting data generation'
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77 generate_batches()