annotate PGAP-1.2.1/blast_parser.pl @ 11:e0c913351502 draft default tip

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date Thu, 01 Jul 2021 12:22:53 +0000
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1 #!/usr/bin/perl
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2 use strict;
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3 use warnings;
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4 #use lib '/afs/pdc.kth.se/home/k/krifo/vol03/domainAligner/Inparanoid_new/lib64';
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5 #use lib '/afs/pdc.kth.se/home/k/krifo/vol03/domainAligner/Inparanoid_new/lib64/lib64/perl5/site_perl/5.8.8/x86_64-linux-thread-multi';
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6 use XML::Parser;
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7
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8 ##############################################################################################
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9 #
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10 # This parser parses output files from blastall (blastp) and outputs one-line descriptions
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11 # for each hit with a score above or equal to a cut-off score that is specified as a parameter
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12 # to the program. The one-line description contains the following ifomation separated by tab
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13 # * Query id
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14 # * Hit id
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15 # * Bit score
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16 # * Query length
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17 # * Hit length
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18 # * Length of longest segment on query. This is defined as the length of the segment from the
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19 # first position od the first hsp to the last position of the last hsp. I.e. if the
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20 # hsps are 1-10 and 90-100, the length of the longest segment will be 100.
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21 # * Length of longest segment on hit, see explanation above.
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22 # * Total match length on query. This is defined as the total length of all hsps. If the hsps
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23 # are 1-10 and 90-100, the length will be 20.
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24 # * Total match length on hit. see explanation above
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25 # * Positions for all segments on the query and on the hit. Positions on the query is written
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26 # as p:1-100 and positions on the hit is writteh as h:1-100. Positions for all hsps are
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27 # specified separated nt tab. Positions for query and hut for a segment is separated by
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28 # one whitespace.
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29 #
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30
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31 # MODIFICATION: also add %identity as next output field
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32 # HOWEVER note this is specifically protein sequence identity of the aligned regions, not all of the proteins
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33
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34 # If alignment mode is used, the parser prints a > before all data on the one-line description.
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35 # The next two lines will contain the aligned sequences, including gaps. Alignment mode is off
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36 # by default but can be used if the second parameter sent to the parser is -a. If alignment
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37 # mode is not used only the score cutoff and the Blast XML file should be sent to the parser.
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38 #
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39 # NB: This parser was created for blast 2.2.16. If you run earlier versions of blast or
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40 # blast with -VT to emulate the old behaviour the code in this script must be changed a bit.
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41 # The neccesary changes are few and the first change is to un-comment all lines
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42 # marked by ##. Lines marked with ## occurs here at the beginning of the script and on a couple
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43 # of places in the My::TagHandler package (In the Init subroutine). The other change neccessary
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44 # is to comment/remove all lines marked with #REMOVE THIS LINE FOR OLDER VERSIONS OF BLAST.
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45 #
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46 # Written by Isabella Pekkari 2007-11-19
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47 # Modified by Kristoffer Forslund 2008-05-07 to add biased composition handling
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48 #
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49 ##############################################################################################
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50
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51 # First argument is score cutt-of in bits
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52 # Second argument is beta threshold for composition filtering. Set to 0.0 to disable.
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53 # Third argument is blast result file (.xml, i.i run blast with option -m7) that shall be parsed
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54 my $score_cutoff = shift;
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55
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56
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57 # If alignment mode shall be used, the flag -a is specified as the first parameter
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58 # Alignment mode is off by defalut so the flag -a must be specified if this mode shall be used.
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59 my $alignment_mode = 0;
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60 if (defined $ARGV[0] && $ARGV[0] eq '-a') {
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61
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62 $alignment_mode = 1;
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63 shift;
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64 }
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65
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66 # If segments must be ordered in a linear fashion on both sequences.
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67 # If 1, the hsp order must be the same on the query and the hit.
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68 # For example, if the n-terminal of the hit matches the c-terminal of
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69 # the query another segment where the c-terminal of the hit matches
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70 # the n-terminal of the hit si not allowed.
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71 # If this parameter is set to 0, hsps can be ordered differently on the
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72 # query and the hit. In both cases, an overlap of maximum 5% of the shortest segment
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73 # is allowed.
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74 my $linear_segment_mode = 1;
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75
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76 # Only for older versions of blast
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77 ##my $done = 0;
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78
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79
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80
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81 # Create an xml parser
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82 my $p = XML::Parser->new( Style => 'My::TagHandler', );
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83
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84 # Create an Expat::NB parser
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85 my $nb_p = $p->parse_start();
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86
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87 # Parse the xml file
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88 parse_document();
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89
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90 sub parse_document {
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91
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92 while(my $l = <>){
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93 ##if ($done) {
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94
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95 ##$nb_p->parse_done;
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96 ##$nb_p = $p->parse_start();
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97 ##$done = 0;
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98
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99 ##} else {
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100 # Remove whitespace at the end of the line
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101 chomp($l);
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102 ##/DEBUG
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103 # print STDERR "###" .$l . "###\n";
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104 # Parse the line
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105 $nb_p->parse_more($l);
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106 ##}
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107 }
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108
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109 # Shut the parser down
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110 $nb_p->parse_done;
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111
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112 }
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113
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114 # Only used for older versions of blast
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115 ##sub next_doc {
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116
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117 ## $done = 1;
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118
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119 ##}
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120
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121
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122
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123 ############################################
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124 # Package for parsing xml files obtained
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125 # from blast.
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126 ############################################
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127 package My::TagHandler;
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128
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129 use strict;
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130 use warnings;
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131
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132 #Subroutines
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133 my $create_query;
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134 my $store_query_length;
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135 my $new_hit;
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136 my $save_hit_length;
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137 my $new_hsp;
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138 my $save_hsp_start_query;
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139 my $save_hsp_end_query;
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140 my $save_hsp_start_hit;
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141 my $save_hsp_end_hit;
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142 my $save_hsp_qseq;
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143 my $save_hsp_hseq;
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144 my $end_hit;
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145 my $print_query;
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146 my $check_if_overlap_non_linear_allowed;
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147 my $check_if_overlap_linear;
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148
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149 my @current_query; # The current query
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150 my $current_hit; # The current hit
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151 my $current_hsp; # The current hsp
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152
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153 my $currentText = ''; # Text from the current tag
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154
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155 # Names of tags that shall be parsed as key and references to
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156 # the anonymous subroutine that shall be run when parsing the tag as value.
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157 my %tags_to_parse;
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158
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159 # Reference to the anonymous subroutine that shall be run
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160 # to check whether there is an overlap between two hsps.
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161 my $overlap_sub;
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162
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163 sub Init {
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164
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165 my($expat) = @_;
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166
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167 #Subroutine for creating new query
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168 $create_query = sub {
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169
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170 # The the query id. Additional information for the query is ignored.
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171 my @tmp = split(/\s+/, $currentText);
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172 @current_query = ($tmp[0], 0, [])
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173 };
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174
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175 #Subroutine for storing query length
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176 $store_query_length = sub {$current_query[1] = $currentText};
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177
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178 #Subroutine for creating new hit
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179 $new_hit = sub {
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180
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181 # The the hit id. Additional information for the hit is ignored.
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182 my @tmp = split(/\s+/, $currentText);
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183 $current_hit = [$tmp[0], 0, 0, 0, 0, [], 0];
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184 };
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185
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186 #Subroutine for saving hit length
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187 $save_hit_length = sub {$current_hit->[1] = $currentText};
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188
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189 #Subroutine for creating new hsp
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190 $new_hsp = sub {$current_hsp = [$currentText]};
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191
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192 # Subroutine for saving hsp start on query
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193 $save_hsp_start_query = sub {$current_hsp->[1] = $currentText};
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194
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195 # Subroutine for saving hsp end on query
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196 $save_hsp_end_query = sub {$current_hsp->[2] = $currentText};
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197
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198 # Subroutine for saving hsp start on hit
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199 $save_hsp_start_hit = sub {$current_hsp->[3] = $currentText};
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200
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201 # Subroutine for saving hsp end on hit
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202 $save_hsp_end_hit = sub {$current_hsp->[4] = $currentText;};
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203
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204 # Subroutine for saving hsp query sequence (as in alignment)
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205 $save_hsp_qseq = sub {$current_hsp->[5] = $currentText;};
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206
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207 # Subroutine for saving hsp hit sequence (as in alignment)
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dereeper
parents:
diff changeset
208 $save_hsp_hseq = sub {$current_hsp->[6] = $currentText;
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dereeper
parents:
diff changeset
209
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parents:
diff changeset
210 # Check if this hsp overlaps with any of the
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dereeper
parents:
diff changeset
211 # existing hsps
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parents:
diff changeset
212 my $overlap_found = 0;
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dereeper
parents:
diff changeset
213 foreach my $existing_hsp (@{$current_hit->[5]}) {
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dereeper
parents:
diff changeset
214
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dereeper
parents:
diff changeset
215 if ($overlap_sub->($current_hsp, $existing_hsp)) {
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dereeper
parents:
diff changeset
216 $overlap_found = 1;
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dereeper
parents:
diff changeset
217 last;
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dereeper
parents:
diff changeset
218 }
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dereeper
parents:
diff changeset
219
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dereeper
parents:
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220 }
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dereeper
parents:
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221
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parents:
diff changeset
222 # If this hsp does not overlap with any hsp it is added
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dereeper
parents:
diff changeset
223
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parents:
diff changeset
224
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parents:
diff changeset
225 unless ($overlap_found) {
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parents:
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226
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parents:
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227 # Add the hsp to the hit
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parents:
diff changeset
228 push( @{$current_hit->[5]}, $current_hsp);
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parents:
diff changeset
229
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parents:
diff changeset
230 # Increase number of hsps for the hit with one
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parents:
diff changeset
231 $current_hit->[6]++;
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parents:
diff changeset
232
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parents:
diff changeset
233 # Add the hsp score to the total score
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parents:
diff changeset
234 $current_hit->[2] += $current_hsp->[0];
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dereeper
parents:
diff changeset
235
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parents:
diff changeset
236 # Add the hsp length on the query to the total hsp length on the query
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parents:
diff changeset
237 $current_hit->[3] += ($current_hsp->[2] - $current_hsp->[1] + 1);
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dereeper
parents:
diff changeset
238
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parents:
diff changeset
239 # Add the hsp length on the hit to the total hsp length on the hit
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parents:
diff changeset
240 $current_hit->[4] += ($current_hsp->[4] - $current_hsp->[3] + 1);
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dereeper
parents:
diff changeset
241 }
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dereeper
parents:
diff changeset
242
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dereeper
parents:
diff changeset
243 };
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dereeper
parents:
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244
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parents:
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245 # Subroutine for saving hit
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dereeper
parents:
diff changeset
246 $end_hit = sub {
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parents:
diff changeset
247
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parents:
diff changeset
248 #Add the hit to the qurrent query
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parents:
diff changeset
249 unless ($current_hit->[2] < $score_cutoff ) {
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parents:
diff changeset
250 push( @{$current_query[2]}, $current_hit );
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dereeper
parents:
diff changeset
251 }
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dereeper
parents:
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252 };
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dereeper
parents:
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253
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dereeper
parents:
diff changeset
254 # Subroutine for printing all hits for a query
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dereeper
parents:
diff changeset
255 $print_query = sub {
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dereeper
parents:
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256
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parents:
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257 # Sort the hits after score with hit with highest score first
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parents:
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258 my @sorted_hits = sort {$b->[2] <=> $a->[2]} @{$current_query[2]};
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parents:
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259
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parents:
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260 # For all hits
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parents:
diff changeset
261 foreach my $hit (@sorted_hits) {
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parents:
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262
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parents:
diff changeset
263 if ($alignment_mode) {
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parents:
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264
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parents:
diff changeset
265 # When alignment mode is used, self hits are not printed
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parents:
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266 # Therefore, the hit is ignored if it has the same id as the query
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dereeper
parents:
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267 next if ($current_query[0] eq $hit->[0]);
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parents:
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268
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parents:
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269 # When alignment mode is used, a > is printed at the start of
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dereeper
parents:
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270 # lines containing data, i.e. lines that do not contain sequences
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parents:
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271 print ">";
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parents:
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272 }
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parents:
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273
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parents:
diff changeset
274 print "$current_query[0]\t"; # Print query id
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dereeper
parents:
diff changeset
275 print "$hit->[0]\t"; # Print hit id
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dereeper
parents:
diff changeset
276 printf ("%.1f\t", $hit->[2]); # Print bit score
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dereeper
parents:
diff changeset
277 print "$current_query[1]\t"; # Print query length
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dereeper
parents:
diff changeset
278 print "$hit->[1]\t"; # Print hit length
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parents:
diff changeset
279
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parents:
diff changeset
280 if ($hit->[6] > 1) { # if more than one segment
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dereeper
parents:
diff changeset
281
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dereeper
parents:
diff changeset
282 # Sort hsps on query
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dereeper
parents:
diff changeset
283 my @hsps_sorted_on_query = sort {$a->[1] <=> $b->[1]} @{$hit->[5]};
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dereeper
parents:
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284
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parents:
diff changeset
285 # Sort hsps on hit
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dereeper
parents:
diff changeset
286 my @hsps_sorted_on_hit = sort {$a->[3] <=> $b->[3]} @{$hit->[5]};
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dereeper
parents:
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287
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dereeper
parents:
diff changeset
288 # Get total segment length on query
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dereeper
parents:
diff changeset
289 my $segm_length_query = $hsps_sorted_on_query[@hsps_sorted_on_query - 1]->[2] - $hsps_sorted_on_query[0]->[1] + 1;
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dereeper
parents:
diff changeset
290
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dereeper
parents:
diff changeset
291 # Get total segment length on hit
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dereeper
parents:
diff changeset
292 my $segm_length_hit = $hsps_sorted_on_hit[@hsps_sorted_on_hit - 1]->[4] - $hsps_sorted_on_hit[0]->[3] + 1;
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dereeper
parents:
diff changeset
293
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parents:
diff changeset
294 print "$segm_length_query\t"; # Print segment length on query (i.e lengt of the segment started by the first hsp and ended by the last hsp)
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dereeper
parents:
diff changeset
295 print "$segm_length_hit\t"; # Print segment length on query
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dereeper
parents:
diff changeset
296 print "$hit->[3]\t$hit->[4]\t"; # Print total length of all hsps on the query and on the match, i.e length of actually matching region
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dereeper
parents:
diff changeset
297
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dereeper
parents:
diff changeset
298 # In alignment mode, the aligned sequences shall be printed on the lines following the data line
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dereeper
parents:
diff changeset
299 my $hsp_qseq = '';
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dereeper
parents:
diff changeset
300 my $hsp_hseq = '';
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dereeper
parents:
diff changeset
301
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dereeper
parents:
diff changeset
302 # Print query and hit segment positions
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dereeper
parents:
diff changeset
303 foreach my $segment (@hsps_sorted_on_query) {
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dereeper
parents:
diff changeset
304
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dereeper
parents:
diff changeset
305 print "q:$segment->[1]-$segment->[2] ";
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dereeper
parents:
diff changeset
306 print "h:$segment->[3]-$segment->[4]\t";
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dereeper
parents:
diff changeset
307
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dereeper
parents:
diff changeset
308 if ($alignment_mode) {
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dereeper
parents:
diff changeset
309
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dereeper
parents:
diff changeset
310 # Add the hsp sequences to the total sequence
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dereeper
parents:
diff changeset
311 $hsp_qseq .= $segment->[5];
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dereeper
parents:
diff changeset
312 $hsp_hseq .= $segment->[6];
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dereeper
parents:
diff changeset
313 }
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dereeper
parents:
diff changeset
314
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dereeper
parents:
diff changeset
315 }
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dereeper
parents:
diff changeset
316
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dereeper
parents:
diff changeset
317 print "\n";
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dereeper
parents:
diff changeset
318
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dereeper
parents:
diff changeset
319 if ($alignment_mode) {
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dereeper
parents:
diff changeset
320
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dereeper
parents:
diff changeset
321 # Print sequences
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dereeper
parents:
diff changeset
322 print "$hsp_qseq\n";
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dereeper
parents:
diff changeset
323 print "$hsp_hseq\n";
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dereeper
parents:
diff changeset
324 }
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dereeper
parents:
diff changeset
325
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dereeper
parents:
diff changeset
326 } else {
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dereeper
parents:
diff changeset
327 # Get the only hsp that was found for this hit
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dereeper
parents:
diff changeset
328 my $segment = $hit->[5]->[0];
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dereeper
parents:
diff changeset
329
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dereeper
parents:
diff changeset
330 # Get total segment length on query
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dereeper
parents:
diff changeset
331 my $segm_length_query = $segment->[2] - $segment->[1] + 1;
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dereeper
parents:
diff changeset
332
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parents:
diff changeset
333 # Get total segment length on hit
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dereeper
parents:
diff changeset
334 my $segm_length_hit = $segment->[4] - $segment->[3] + 1;
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dereeper
parents:
diff changeset
335
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parents:
diff changeset
336 print "$segm_length_query\t"; # Print segment length on query, i.e. length of this hsp on query
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dereeper
parents:
diff changeset
337 print "$segm_length_hit\t"; # Print segment length on hit, i.e. length of this hsp on hit
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dereeper
parents:
diff changeset
338
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dereeper
parents:
diff changeset
339 # Print total length of all hsps on the query and on the match, i.e length of actually matching region
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dereeper
parents:
diff changeset
340 # Sice there is only one segment, these lengths will be the same as the segment lengths printed above.
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dereeper
parents:
diff changeset
341 print "$hit->[3]\t$hit->[4]\t";
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dereeper
parents:
diff changeset
342
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dereeper
parents:
diff changeset
343 # Print segment positions
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dereeper
parents:
diff changeset
344
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dereeper
parents:
diff changeset
345 print "q:$segment->[1]-$segment->[2] ";
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dereeper
parents:
diff changeset
346 print "h:$segment->[3]-$segment->[4]\t";
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dereeper
parents:
diff changeset
347 print "\n";
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dereeper
parents:
diff changeset
348
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dereeper
parents:
diff changeset
349 if ($alignment_mode) {
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dereeper
parents:
diff changeset
350
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dereeper
parents:
diff changeset
351 # Print sequences
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dereeper
parents:
diff changeset
352 print "$segment->[5]\n";
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dereeper
parents:
diff changeset
353 print "$segment->[6]\n";
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dereeper
parents:
diff changeset
354 }
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dereeper
parents:
diff changeset
355
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dereeper
parents:
diff changeset
356 }
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dereeper
parents:
diff changeset
357 }
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dereeper
parents:
diff changeset
358 ##main::next_doc(); #NB! Un-comment for older blast versions
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dereeper
parents:
diff changeset
359
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dereeper
parents:
diff changeset
360 };
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dereeper
parents:
diff changeset
361
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dereeper
parents:
diff changeset
362 # Subroutine for checking if two hsps overlap.
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dereeper
parents:
diff changeset
363 # When this subroutine is used, non-linear arrangements of the hsps are allowed.
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dereeper
parents:
diff changeset
364 $check_if_overlap_non_linear_allowed = sub {
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dereeper
parents:
diff changeset
365
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dereeper
parents:
diff changeset
366 my $hsp1 = shift; # One hsp
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dereeper
parents:
diff changeset
367 my $hsp2 = shift; # Another hsp
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dereeper
parents:
diff changeset
368
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dereeper
parents:
diff changeset
369 # Check if there is an overlap.
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dereeper
parents:
diff changeset
370 return (_check_overlap_non_linear_allowed($hsp1->[1], $hsp1->[2], $hsp2->[1], $hsp2->[2])
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dereeper
parents:
diff changeset
371 || _check_overlap_non_linear_allowed($hsp1->[3], $hsp1->[4], $hsp2->[3], $hsp2->[4]));
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dereeper
parents:
diff changeset
372
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dereeper
parents:
diff changeset
373 };
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dereeper
parents:
diff changeset
374
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dereeper
parents:
diff changeset
375 # Subroutine for checking if two hsps overlap.
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dereeper
parents:
diff changeset
376 # When this subroutine is used, non-linear arrangements of the hsps are not allowed.
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dereeper
parents:
diff changeset
377 $check_if_overlap_linear = sub {
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dereeper
parents:
diff changeset
378
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dereeper
parents:
diff changeset
379 my $hsp1 = shift; # One hsp
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dereeper
parents:
diff changeset
380 my $hsp2 = shift; # Another hsp
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dereeper
parents:
diff changeset
381
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dereeper
parents:
diff changeset
382 # Get start point for hsp1 on query
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dereeper
parents:
diff changeset
383 my $start1_hsp1 = $hsp1->[1];
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dereeper
parents:
diff changeset
384
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dereeper
parents:
diff changeset
385 # Get start point for hsp2 on query
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dereeper
parents:
diff changeset
386 my $start1_hsp2 = $hsp2->[1];
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dereeper
parents:
diff changeset
387
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dereeper
parents:
diff changeset
388 # The hsp that comes first oon the query (N-terminal hsp)
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dereeper
parents:
diff changeset
389 my $first_hsp;
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dereeper
parents:
diff changeset
390
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dereeper
parents:
diff changeset
391 # The hsp that comes last on the query
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dereeper
parents:
diff changeset
392 my $last_hsp;
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dereeper
parents:
diff changeset
393
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dereeper
parents:
diff changeset
394 # Check which hsp is N-teminal.
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dereeper
parents:
diff changeset
395 if ($start1_hsp1 eq $start1_hsp2) { # If the fragments start at the same position, there is an overlap (100% of shorter sequence)
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dereeper
parents:
diff changeset
396 return 1;
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dereeper
parents:
diff changeset
397 } elsif ($start1_hsp1 < $start1_hsp2) {
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dereeper
parents:
diff changeset
398
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dereeper
parents:
diff changeset
399 $first_hsp = $hsp1;
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dereeper
parents:
diff changeset
400 $last_hsp = $hsp2;
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dereeper
parents:
diff changeset
401
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dereeper
parents:
diff changeset
402 } else {
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dereeper
parents:
diff changeset
403
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dereeper
parents:
diff changeset
404 $first_hsp = $hsp2;
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dereeper
parents:
diff changeset
405 $last_hsp = $hsp1;
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dereeper
parents:
diff changeset
406
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dereeper
parents:
diff changeset
407 }
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dereeper
parents:
diff changeset
408
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dereeper
parents:
diff changeset
409 # Return whether there is an overlap or not.
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dereeper
parents:
diff changeset
410 return (_check_overlap_linear($first_hsp->[1], $first_hsp->[2], $last_hsp->[1], $last_hsp->[2])
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dereeper
parents:
diff changeset
411 || _check_overlap_linear($first_hsp->[3], $first_hsp->[4], $last_hsp->[3], $last_hsp->[4]));
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dereeper
parents:
diff changeset
412 };
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dereeper
parents:
diff changeset
413
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dereeper
parents:
diff changeset
414 %tags_to_parse = (
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parents:
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415
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parents:
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416 ##'BlastOutput_query-def' => $create_query,
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parents:
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417 ##'BlastOutput_query-def' => $create_query,
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parents:
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418 ## 'BlastOutput_query-def' => $create_query,
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parents:
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419 ## 'BlastOutput_query-len' => $store_query_length,
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parents:
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420 'Iteration_query-def' => $create_query, # Query id #REMOVE THIS LINE FOR OLDER VERSIONS OF BLAST
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parents:
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421 'Iteration_query-len' => $store_query_length, # Query length #REMOVE THIS LINE FOR OLDER VERSIONS OF BLAST
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parents:
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422 'Hit_def' => $new_hit, # Hit id
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parents:
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423 'Hit_len' => $save_hit_length, # Hit length
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parents:
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424 'Hsp_bit-score' => $new_hsp, # Hsp bit score
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parents:
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425 'Hsp_query-from' => $save_hsp_start_query, # Start point for hsp on query
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parents:
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426 'Hsp_query-to' => $save_hsp_end_query, # End point for hsp on query
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parents:
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427 'Hsp_hit-from' => $save_hsp_start_hit, # Start position for hsp on hit
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parents:
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428 'Hsp_hit-to' => $save_hsp_end_hit, # End position for hsp on hit
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parents:
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429 'Hsp_qseq' => $save_hsp_qseq, # Hsp query sequence (gapped as in the alignment)
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parents:
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430 'Hsp_hseq' => $save_hsp_hseq, # Hsp hit sequence (gapped as in the alignment)
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parents:
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431 'Hit_hsps' => $end_hit, # End of hit
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432 ##'BlastOutput' => $print_query
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433 'Iteration' => $print_query # End of query #REMOVE THIS LINE FOR OLDER VERSIONS OF BLAST
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parents:
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434 );
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parents:
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435
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parents:
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436 # Set overlap subroutine to use
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parents:
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437 if ($linear_segment_mode eq 1) {
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parents:
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438 $overlap_sub = $check_if_overlap_linear;
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parents:
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439 } else {
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parents:
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440 $overlap_sub = $check_if_overlap_non_linear_allowed;
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parents:
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441 }
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parents:
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442 }
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parents:
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443
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parents:
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444 # Nothing is done when encountering a start tag
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parents:
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445 #sub Start
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parents:
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446 #{
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parents:
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447
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parents:
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448 #}
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parents:
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449
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parents:
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450 sub End {
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parents:
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451
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parents:
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452 my($expat, $tag) = @_;
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parents:
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453
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parents:
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454 # If the name of the tag is in the table with names of tags to parse,
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parents:
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455 # run the corresponding subroutine
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parents:
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456 $tags_to_parse{$tag} && do { $tags_to_parse{$tag}->()};
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parents:
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457
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parents:
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458 }
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parents:
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459
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parents:
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460 sub Char
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parents:
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461 {
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parents:
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462 my($expat, $text) = @_;
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parents:
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463 # Save the tag text
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parents:
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464 $currentText = $text;
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parents:
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465 }
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466
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parents:
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467 sub _check_overlap_linear {
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parents:
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468
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parents:
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469 my ($start1, $end1, $start2, $end2) = @_;
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470
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parents:
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471 # Length of segment 1
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472 my $length1 = $end1 - $start1 + 1;
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473
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parents:
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474 # Length of segment 2
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parents:
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475 my $length2 = $end2 - $start2 + 1;
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476
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parents:
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477 # Get the length of the sortest of these segments
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parents:
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478 my $shortest_length = ($length1 < $length2)?$length1:$length2;
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479
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480 # Maxumin of 5% overlap (witg regard to the shorter segment) is allowed
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parents:
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481 return (($start2 - $end1 - 1) / $shortest_length < - 0.05);
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parents:
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482 }
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parents:
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483
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484
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parents:
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485
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parents:
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486 sub _check_overlap_non_linear_allowed {
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parents:
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487
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parents:
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488 my ($start1, $end1, $start2, $end2) = @_;
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489
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490 # Length of segment 1
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parents:
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491 my $length1 = $end1 - $start1 + 1;
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492
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493 # Length of segment 2
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parents:
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494 my $length2 = $end2 - $start2 + 1;
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495
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parents:
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496 # Get the length of the sortest of these segments
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parents:
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497 my $shortest_length = ($length1 < $length2)?$length1:$length2;
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parents:
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498
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parents:
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499 if ($start1 eq $start2) { # If the fragment start at the same position, there is an overlap (100% of shorter sequence)
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parents:
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500 return 1;
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parents:
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501 } elsif ($start1 < $start2) {
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parents:
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502
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parents:
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503 if (($start2 - $end1 + 1) / $shortest_length < - 0.05) {
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parents:
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504 return 1;
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parents:
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505 }
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parents:
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506
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parents:
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507 } else {
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parents:
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508
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parents:
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509 if (($start1 - $end2 + 1) / $shortest_length < - 0.05) {
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parents:
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510 return 1;
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parents:
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511 }
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parents:
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512
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parents:
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513 }
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parents:
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514
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parents:
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515 # If the method has not returned yet, there is no overlap
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parents:
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516 return 0;
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parents:
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517 }