1 | DINIT2A2 ;SFISC/MKO-KEY AND INDEX FILES ;8:42 AM 4 Jun 1999
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2 | ;;22.0;VA FileMan;**1**;Mar 30, 1999
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3 | ;Per VHA Directive 10-93-142, this routine should not be modified.
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4 | F I=1:2 S X=$T(Q+I) Q:X="" S Y=$E($T(Q+I+1),4,999),X=$E(X,4,999) S:$A(Y)=126 I=I+1,Y=$E(Y,2,999)_$E($T(Q+I+1),5,99) S:$A(Y)=61 Y=$E(Y,2,999) S @X=Y
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5 | G ^DINIT2A3
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6 | Q Q
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7 | ;;^DD(.11,2.1,9)
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8 | ;;=@
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9 | ;;^DD(.11,2.1,21,0)
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10 | ;;=^^16^16^2990430^
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11 | ;;^DD(.11,2.1,21,1,0)
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12 | ;;=Answer with the M code that FileMan should execute when the values of
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13 | ;;^DD(.11,2.1,21,2,0)
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14 | ;;=fields that make up the cross-reference are changed or deleted. When field
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15 | ;;^DD(.11,2.1,21,3,0)
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16 | ;;=values are changed, FileMan executes first the KILL LOGIC, then the SET
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17 | ;;^DD(.11,2.1,21,4,0)
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18 | ;;=LOGIC.
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19 | ;;^DD(.11,2.1,21,5,0)
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20 | ;;=
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21 | ;;^DD(.11,2.1,21,6,0)
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22 | ;;=Assume the DA array describes the record to be cross-referenced, and that
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23 | ;;^DD(.11,2.1,21,7,0)
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24 | ;;=the X(order#) array contains values after the transform for storage is
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25 | ;;^DD(.11,2.1,21,8,0)
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26 | ;;=applied, but before the truncation to the maximum length. The variable X
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27 | ;;^DD(.11,2.1,21,9,0)
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28 | ;;=also equals X(order#) of the lowest order number.
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29 | ;;^DD(.11,2.1,21,10,0)
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30 | ;;=
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31 | ;;^DD(.11,2.1,21,11,0)
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32 | ;;=When fields that make up a cross-reference are edited and the kill and set
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33 | ;;^DD(.11,2.1,21,12,0)
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34 | ;;=logic are executed, the X1(order#) array contains the old field values,
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35 | ;;^DD(.11,2.1,21,13,0)
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36 | ;;=and the X2(order#) array contains the new field values. If a record is
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37 | ;;^DD(.11,2.1,21,14,0)
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38 | ;;=being added, and there is an X1(order#) array element that corresponds to
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39 | ;;^DD(.11,2.1,21,15,0)
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40 | ;;=the .01 field, it is set to null. When a record is deleted, all X2(order#)
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41 | ;;^DD(.11,2.1,21,16,0)
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42 | ;;=array elements are null.
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43 | ;;^DD(.11,2.1,"DT")
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44 | ;;=2960116
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45 | ;;^DD(.11,2.2,0)
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46 | ;;=OVERFLOW KILL LOGIC^.112^^2.2;0
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47 | ;;^DD(.11,2.2,"DT")
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48 | ;;=2960124
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49 | ;;^DD(.11,2.3,0)
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50 | ;;=KILL CONDITION^F^^2.3;E1,245^K:$L(X)>245!($L(X)<1) X
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51 | ;;^DD(.11,2.3,3)
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52 | ;;=Answer must be a valid FileMan computed expression. Answer '??' for more help.
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53 | ;;^DD(.11,2.3,21,0)
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54 | ;;=^^5^5^2960124^
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55 | ;;^DD(.11,2.3,21,1,0)
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56 | ;;=Answer with a FileMan computed expression that will evaluate to Boolean
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57 | ;;^DD(.11,2.3,21,2,0)
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58 | ;;=true (according to the M rules for Boolean interpretation). FileMan will
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59 | ;;^DD(.11,2.3,21,3,0)
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60 | ;;=evaluate this expression whenever it would normally execute the
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61 | ;;^DD(.11,2.3,21,4,0)
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62 | ;;=cross-reference's Kill Logic, and will not execute the Kill Logic unless
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63 | ;;^DD(.11,2.3,21,5,0)
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64 | ;;=this condition evaluates to true.
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65 | ;;^DD(.11,2.3,"DT")
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66 | ;;=2960116
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67 | ;;^DD(.11,2.4,0)
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68 | ;;=KILL CONDITION CODE^K^^2.4;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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69 | ;;^DD(.11,2.4,3)
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70 | ;;=This is Standard MUMPS code. Answer '??' for more help.
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71 | ;;^DD(.11,2.4,9)
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72 | ;;=@
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73 | ;;^DD(.11,2.4,21,0)
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74 | ;;=^^15^15^2990430^
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75 | ;;^DD(.11,2.4,21,1,0)
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76 | ;;=This is MUMPS code, that sets the variable X. The KILL LOGIC is executed
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77 | ;;^DD(.11,2.4,21,2,0)
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78 | ;;=only if the KILL CONDITION, if present, sets X such the X evaluates to
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79 | ;;^DD(.11,2.4,21,3,0)
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80 | ;;=true, (according to M rules for Boolean interpretation)
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81 | ;;^DD(.11,2.4,21,4,0)
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82 | ;;=
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83 | ;;^DD(.11,2.4,21,5,0)
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84 | ;;=Assume the DA array describes the record to be cross-referenced, and that
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85 | ;;^DD(.11,2.4,21,6,0)
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86 | ;;=the X(order#) array contains values after the transform for storage is
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87 | ;;^DD(.11,2.4,21,7,0)
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88 | ;;=applied, but before the truncation to the maximum length. The variable X
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89 | ;;^DD(.11,2.4,21,8,0)
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90 | ;;=also equals X(order#) of the lowest order number.
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91 | ;;^DD(.11,2.4,21,9,0)
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92 | ;;=
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93 | ;;^DD(.11,2.4,21,10,0)
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94 | ;;=When fields that make up a cross-reference are edited and the kill and set
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95 | ;;^DD(.11,2.4,21,11,0)
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96 | ;;=conditions are executed, the X1(order#) array contains the old field
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97 | ;;^DD(.11,2.4,21,12,0)
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98 | ;;=values, and the X2(order#) array contains the new field values. If a
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99 | ;;^DD(.11,2.4,21,13,0)
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100 | ;;=record is being added, and there is an X1(order#) array element that
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101 | ;;^DD(.11,2.4,21,14,0)
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102 | ;;=corresponds to the .01 field, it is set to null. When a record is deleted,
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103 | ;;^DD(.11,2.4,21,15,0)
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104 | ;;=all X2(order#) array elements are null.
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105 | ;;^DD(.11,2.4,"DT")
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106 | ;;=2970117
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107 | ;;^DD(.11,2.5,0)
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108 | ;;=KILL ENTIRE INDEX CODE^K^^2.5;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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109 | ;;^DD(.11,2.5,3)
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110 | ;;=This is Standard MUMPS code. Answer '??' for more help.
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111 | ;;^DD(.11,2.5,9)
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112 | ;;=@
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113 | ;;^DD(.11,2.5,21,0)
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114 | ;;=^^4^4^2980911^
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115 | ;;^DD(.11,2.5,21,1,0)
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116 | ;;=This is kill statement that can be executed to remove an entire index for
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117 | ;;^DD(.11,2.5,21,2,0)
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118 | ;;=all records in a file. When an entire file is reindexed, FileMan executes
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119 | ;;^DD(.11,2.5,21,3,0)
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120 | ;;=this code instead of looping through all the entries in a file and
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121 | ;;^DD(.11,2.5,21,4,0)
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122 | ;;=executing the kill logic once for each entry.
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123 | ;;^DD(.11,2.5,"DT")
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124 | ;;=2970117
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125 | ;;^DD(.11,11.1,0)
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126 | ;;=CROSS-REFERENCE VALUES^.114IA^^11.1;0
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127 | ;;^DD(.11,11.1,"DT")
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128 | ;;=2960221
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129 | ;;^DD(.1101,0)
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130 | ;;=DESCRIPTION SUB-FIELD^^.01^1
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131 | ;;^DD(.1101,0,"DT")
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132 | ;;=2960116
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133 | ;;^DD(.1101,0,"NM","DESCRIPTION")
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134 | ;;=
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135 | ;;^DD(.1101,0,"UP")
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136 | ;;=.11
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137 | ;;^DD(.1101,.01,0)
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138 | ;;=DESCRIPTION^W^^0;1^Q
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139 | ;;^DD(.1101,.01,3)
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140 | ;;=Answer '??' for more help.
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141 | ;;^DD(.1101,.01,21,0)
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142 | ;;=^^3^3^2960123^
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143 | ;;^DD(.1101,.01,21,1,0)
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144 | ;;=Answer should describe the purpose of this index, along with any technical
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145 | ;;^DD(.1101,.01,21,2,0)
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146 | ;;=information that might be useful to advanced users, developers,
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147 | ;;^DD(.1101,.01,21,3,0)
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148 | ;;=troubleshooters, or system managers.
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149 | ;;^DD(.1101,.01,"DT")
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150 | ;;=2960116
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151 | ;;^DD(.111,0)
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152 | ;;=OVERFLOW SET LOGIC SUB-FIELD^^1^2
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153 | ;;^DD(.111,0,"DT")
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154 | ;;=2960124
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155 | ;;^DD(.111,0,"NM","OVERFLOW SET LOGIC")
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156 | ;;=
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157 | ;;^DD(.111,0,"UP")
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158 | ;;=.11
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159 | ;;^DD(.111,.01,0)
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160 | ;;=OVERFLOW SET LOGIC NODE^MNJ6,0X^^0;1^K:+X'=X!(X>999999)!(X<1)!(X?.E1"."1N.N) X S:$D(X) DINUM=X
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161 | ;;^DD(.111,.01,3)
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162 | ;;=Type a Number between 1 and 999999, 0 Decimal Digits. Answer '??' for more help.
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163 | ;;^DD(.111,.01,21,0)
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164 | ;;=^^3^3^2980911^
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165 | ;;^DD(.111,.01,21,1,0)
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166 | ;;=Answer must be the number of the node under which the additional line of
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167 | ;;^DD(.111,.01,21,2,0)
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168 | ;;=set logic will be filed. Use the overflow nodes if the set logic is too
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169 | ;;^DD(.111,.01,21,3,0)
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170 | ;;=long to fit in the SET LOGIC field.
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171 | ;;^DD(.111,.01,"DT")
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172 | ;;=2980910
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173 | ;;^DD(.111,1,0)
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174 | ;;=OVERFLOW SET LOGIC^RK^^1;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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175 | ;;^DD(.111,1,3)
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176 | ;;=Answer must be Standard M code. Answer '??' for more help.
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177 | ;;^DD(.111,1,9)
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178 | ;;=@
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179 | ;;^DD(.111,1,21,0)
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180 | ;;=^^6^6^2980911^
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181 | ;;^DD(.111,1,21,1,0)
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182 | ;;=Answer with the M code of the additional set logic stored at this node.
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183 | ;;^DD(.111,1,21,2,0)
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184 | ;;=FileMan will not automatically execute this additional code, so the set
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185 | ;;^DD(.111,1,21,3,0)
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186 | ;;=logic must invoke the additional code stored in this overflow node.
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187 | ;;^DD(.111,1,21,4,0)
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188 | ;;=
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189 | ;;^DD(.111,1,21,5,0)
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190 | ;;=The M code can assume that DIXR contains the internal entry number of the
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