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1 #!/usr/bin/env python
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2
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3 from galaxy import eggs
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4 import sys, string
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5 #from rpy import *
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6 import rpy2.robjects as robjects
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7 import rpy2.rlike.container as rlc
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8 from rpy2.robjects.packages import importr
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9 r = robjects.r
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10 grdevices = importr('grDevices')
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11 import numpy
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12
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13 def stop_err(msg):
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14 sys.stderr.write(msg)
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15 sys.exit()
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16
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17 infile = sys.argv[1]
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18 x_cols = sys.argv[2].split(',')
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19 method = sys.argv[3]
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20 outfile = sys.argv[4]
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21 outfile2 = sys.argv[5]
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22
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23 if method == 'svd':
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24 scale = center = "FALSE"
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25 if sys.argv[6] == 'both':
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26 scale = center = "TRUE"
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27 elif sys.argv[6] == 'center':
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28 center = "TRUE"
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29 elif sys.argv[6] == 'scale':
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30 scale = "TRUE"
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31
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32 fout = open(outfile,'w')
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33 elems = []
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34 for i, line in enumerate( file ( infile )):
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35 line = line.rstrip('\r\n')
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36 if len( line )>0 and not line.startswith( '#' ):
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37 elems = line.split( '\t' )
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38 break
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39 if i == 30:
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40 break # Hopefully we'll never get here...
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41
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42 if len( elems )<1:
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43 stop_err( "The data in your input dataset is either missing or not formatted properly." )
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44
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45 x_vals = []
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46
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47 for k,col in enumerate(x_cols):
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48 x_cols[k] = int(col)-1
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49 # x_vals.append([])
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50
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51 NA = 'NA'
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52 skipped = 0
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53 for ind,line in enumerate( file( infile )):
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54 if line and not line.startswith( '#' ):
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55 try:
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56 fields = line.strip().split("\t")
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57 valid_line = True
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58 for k,col in enumerate(x_cols):
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59 try:
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60 xval = float(fields[col])
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61 except:
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62 skipped += 1
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63 valid_line = False
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64 break
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65 if valid_line:
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66 for k,col in enumerate(x_cols):
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67 xval = float(fields[col])
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68 #x_vals[k].append(xval)
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69 x_vals.append(xval)
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70 except:
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71 skipped += 1
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72
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73 #x_vals1 = numpy.asarray(x_vals).transpose()
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74 #dat= r.list(array(x_vals1))
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75 dat = r['matrix'](robjects.FloatVector(x_vals),ncol=len(x_cols),byrow=True)
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76
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77 #set_default_mode(NO_CONVERSION)
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78 try:
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79 if method == "cor":
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80 #pc = r.princomp(r.na_exclude(dat), cor = r("TRUE"))
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81 pc = r.princomp(r['na.exclude'](dat), cor = r("TRUE"))
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82 elif method == "cov":
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83 #pc = r.princomp(r.na_exclude(dat), cor = r("FALSE"))
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84 pc = r.princomp(r['na.exclude'](dat), cor = r("FALSE"))
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85 elif method=="svd":
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86 #pc = r.prcomp(r.na_exclude(dat), center = r(center), scale = r(scale))
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87 pc = r.prcomp(r['na.exclude'](dat), center = r(center), scale = r(scale))
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88 #except RException, rex:
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89 except Exception, rex: # need to find rpy2 RException
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90 stop_err("Encountered error while performing PCA on the input data: %s" %(rex))
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91
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92 #set_default_mode(BASIC_CONVERSION)
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93 summary = r.summary(pc, loadings="TRUE")
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94 #ncomps = len(summary['sdev'])
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95 ncomps = len(summary.rx2('sdev'))
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96
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97 #if type(summary['sdev']) == type({}):
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98 # comps_unsorted = summary['sdev'].keys()
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99 # comps=[]
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100 # sd = summary['sdev'].values()
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101 # for i in range(ncomps):
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102 # sd[i] = summary['sdev'].values()[comps_unsorted.index('Comp.%s' %(i+1))]
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103 # comps.append('Comp.%s' %(i+1))
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104 #elif type(summary['sdev']) == type([]):
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105 # comps=[]
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106 # for i in range(ncomps):
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107 # comps.append('Comp.%s' %(i+1))
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108 # sd = summary['sdev']
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109
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110 comps=[]
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111 for i in range(ncomps):
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112 comps.append('Comp.%s' %(i+1))
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113 sd = summary.rx2('sdev')
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114
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115 print >>fout, "#Component\t%s" %("\t".join(["%s" % el for el in range(1,ncomps+1)]))
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116 #print >>fout, "#Std. deviation\t%s" %("\t".join(["%.4g" % el for el in sd]))
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117 print >>fout, "#Std. deviation\t%s" %("\t".join(["%.4g" % el for el in sd]))
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118 total_var = 0
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119 vars = []
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120 for s in sd:
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121 var = s*s
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122 total_var += var
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123 vars.append(var)
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124 for i,var in enumerate(vars):
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125 vars[i] = vars[i]/total_var
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126
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127 print >>fout, "#Proportion of variance explained\t%s" %("\t".join(["%.4g" % el for el in vars]))
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128
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129 print >>fout, "#Loadings\t%s" %("\t".join(["%s" % el for el in range(1,ncomps+1)]))
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130 xcolnames = ["c%d" %(el+1) for el in x_cols]
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131 #if 'loadings' in summary: #in case of princomp
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132 if 'loadings' in summary.names: #in case of princomp
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133 loadings = 'loadings'
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134 #elif 'rotation' in summary: #in case of prcomp
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135 elif 'rotation' in summary.names: #in case of prcomp
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136 loadings = 'rotation'
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137 #for i,val in enumerate(summary[loadings]):
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138 # print >>fout, "%s\t%s" %(xcolnames[i], "\t".join(["%.4g" % el for el in val]))
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139 vm = summary.rx2(loadings)
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140 for i in range(vm.nrow):
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141 vals = []
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142 for j in range(vm.ncol):
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143 vals.append("%.4g" % vm.rx2(i+1,j+1)[0])
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144 print >>fout, "%s\t%s" %(xcolnames[i], "\t".join(vals))
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145
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146 print >>fout, "#Scores\t%s" %("\t".join(["%s" % el for el in range(1,ncomps+1)]))
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147 #if 'scores' in summary: #in case of princomp
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148 if 'scores' in summary.names: #in case of princomp
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149 scores = 'scores'
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150 #elif 'x' in summary: #in case of prcomp
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151 elif 'x' in summary.names: #in case of prcomp
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152 scores = 'x'
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153 #for obs,sc in enumerate(summary[scores]):
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154 # print >>fout, "%s\t%s" %(obs+1, "\t".join(["%.4g" % el for el in sc]))
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155 vm = summary.rx2(scores)
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156 for i in range(vm.nrow):
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157 vals = []
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158 for j in range(vm.ncol):
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159 vals.append("%.4g" % vm.rx2(i+1,j+1)[0])
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160 print >>fout, "%s\t%s" %(i+1, "\t".join(vals))
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161 r.pdf( outfile2, 8, 8 )
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162 r.biplot(pc)
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163 #r.dev_off()
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164 grdevices.dev_off()
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165
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