221 lines
7.1 KiB
Mathematica
221 lines
7.1 KiB
Mathematica
DINIT2A3 ;SFISC/MKO-KEY AND INDEX FILES ;3:21 PM 25 Apr 2002
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;;22.0;VA FileMan;**1,20,108**;Mar 30, 1999
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;Per VHA Directive 10-93-142, this routine should not be modified.
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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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G ^DINIT2A4
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Q Q
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;;^DD(.111,1,21,6,0)
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;;=Index file entry.
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;;^DD(.111,1,"DT")
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;;=2960124
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;;^DD(.112,0)
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;;=OVERFLOW KILL LOGIC SUB-FIELD^^2^2
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;;^DD(.112,0,"DT")
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;;=2960124
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;;^DD(.112,0,"NM","OVERFLOW KILL LOGIC")
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;;=
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;;^DD(.112,0,"UP")
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;;=.11
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;;^DD(.112,.01,0)
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;;=OVERFLOW KILL LOGIC NODE^MNJ6,0X^^0;1^K:+X'=X!(X>999999)!(X<1)!(X?.E1"."1N.N) X S:$D(X) DINUM=X
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;;^DD(.112,.01,3)
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;;=Type a Number between 1 and 999999, 0 Decimal Digits. Answer '??' for more help.
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;;^DD(.112,.01,21,0)
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;;=^^3^3^2980911^
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;;^DD(.112,.01,21,1,0)
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;;=Answer must be the number of the node under which the additional line of
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;;^DD(.112,.01,21,2,0)
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;;=Set Logic will be filed. Use the overflow nodes if the kill logic is too
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;;^DD(.112,.01,21,3,0)
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;;=long to fit in the KILL LOGIC field.
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;;^DD(.112,.01,"DT")
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;;=2980910
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;;^DD(.112,2,0)
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;;=OVERFLOW KILL LOGIC^RK^^2;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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;;^DD(.112,2,3)
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;;=Answer must be Standard M code. Answer '??' for more help.
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;;^DD(.112,2,9)
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;;=@
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;;^DD(.112,2,21,0)
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;;=^^6^6^2980911^
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;;^DD(.112,2,21,1,0)
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;;=Answer with the M code of the additional kill logic stored at this node.
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;;^DD(.112,2,21,2,0)
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;;=FileMan will not automatically execute this additional code, so the kill
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;;^DD(.112,2,21,3,0)
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;;=logic must invoke the additional code stored in this overflow node.
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;;^DD(.112,2,21,4,0)
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;;=
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;;^DD(.112,2,21,5,0)
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;;=The M code can assume that DIXR contains the internal entry number of the
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;;^DD(.112,2,21,6,0)
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;;=Index file entry.
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;;^DD(.112,2,"DT")
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;;=2960124
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;;^DD(.114,0)
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;;=CROSS-REFERENCE VALUES SUB-FIELD^^8^12
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;;^DD(.114,0,"DT")
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;;=2980723
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;;^DD(.114,0,"ID",1)
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;;=W ""
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;;^DD(.114,0,"IX","B",.114,.01)
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;;=
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;;^DD(.114,0,"NM","CROSS-REFERENCE VALUES")
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;;=
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;;^DD(.114,0,"UP")
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;;=.11
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;;^DD(.114,.01,0)
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;;=ORDER NUMBER^MNJ3,0^^0;1^K:+X'=X!(X>125)!(X<1)!(X?.E1"."1N.N) X
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;;^DD(.114,.01,1,0)
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;;=^.1
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;;^DD(.114,.01,1,1,0)
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;;=.114^B
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;;^DD(.114,.01,1,1,1)
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;;=S ^DD("IX",DA(1),11.1,"B",$E(X,1,30),DA)=""
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;;^DD(.114,.01,1,1,2)
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;;=K ^DD("IX",DA(1),11.1,"B",$E(X,1,30),DA)
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;;^DD(.114,.01,1,1,"DT")
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;;=2970320
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;;^DD(.114,.01,3)
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;;=Type a Number between 1 and 125, 0 Decimal Digits. Answer '??' for more help.
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;;^DD(.114,.01,21,0)
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;;=^^6^6^2980911^
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;;^DD(.114,.01,21,1,0)
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;;=Answer must be the order number of this cross-reference value.
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;;^DD(.114,.01,21,2,0)
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;;=
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;;^DD(.114,.01,21,3,0)
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;;=FileMan evaluates cross-reference values by order of "Order Number" and
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;;^DD(.114,.01,21,4,0)
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;;=places each value in the X(order#) array. The set and kill logic, for
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;;^DD(.114,.01,21,5,0)
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;;=example, can use X(2) to refer to the cross-reference value with order
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;;^DD(.114,.01,21,6,0)
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;;=number 2.
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;;^DD(.114,.01,"DEL",1,0)
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;;=I $P($G(DDS),U,2)="DIKC EDIT" D BLDLOG^DIKCFORM(DA(1)) S DIKCREB=1 I 0
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;;^DD(.114,.01,"DT")
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;;=3020425
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;;^DD(.114,.5,0)
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;;=SUBSCRIPT NUMBER^NJ3,0^^0;6^K:+X'=X!(X>125)!(X<1)!(X?.E1"."1N.N) X
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;;^DD(.114,.5,1,0)
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;;=^.1^^0
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;;^DD(.114,.5,3)
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;;=Type a Number between 1 and 125, 0 Decimal Digits. Answer '??' for more help.
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;;^DD(.114,.5,21,0)
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;;=^^3^3^2980911^
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;;^DD(.114,.5,21,1,0)
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;;=If this cross-reference value is used as a subscript in an index, enter
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;;^DD(.114,.5,21,2,0)
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;;=the subscript position number. The first subscript to the right of the
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;;^DD(.114,.5,21,3,0)
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;;=index name is subscript number 1.
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;;^DD(.114,.5,"DT")
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;;=2980611
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;;^DD(.114,1,0)
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;;=TYPE OF VALUE^RS^F:FIELD;C:COMPUTED VALUE;^0;2^Q
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;;^DD(.114,1,3)
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;;=Answer '??' for more help.
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;;^DD(.114,1,21,0)
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;;=^^4^4^2980911^
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;;^DD(.114,1,21,1,0)
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;;=Answer 'F' if this cross-reference value is based on the value of a field.
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;;^DD(.114,1,21,2,0)
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;;=
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;;^DD(.114,1,21,3,0)
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;;=Answer 'C' if this cross-reference value should be determined by executing
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;;^DD(.114,1,21,4,0)
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;;=the COMPUTED CODE.
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;;^DD(.114,1,"DT")
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;;=2960116
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;;^DD(.114,2,0)
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;;=FILE^NJ20,7^^0;3^K:+X'=X!(X>999999999999)!(X<0)!(X?.E1"."8N.N) X
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;;^DD(.114,2,3)
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;;=Answer must be between 0 and 999999999999, with up to 7 decimal digits. Answer '??' for more help.
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;;^DD(.114,2,21,0)
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;;=^^2^2^2980910^
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;;^DD(.114,2,21,1,0)
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;;=If this cross-reference value is a field value, answer with the number of
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;;^DD(.114,2,21,2,0)
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;;=the file or subfile in which this field is defined.
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;;^DD(.114,2,"DT")
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;;=2960116
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;;^DD(.114,3,0)
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;;=FIELD^NJ20,7X^^0;4^D ITFLD^DIKCDD I $D(X) K:+X'=X!(X>999999999999)!(X<0)!(X?.E1"."8N.N) X
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;;^DD(.114,3,3)
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;;=Type a Number between 0 and 999999999999, 7 Decimal Digits. Answer '??' for more help.
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;;^DD(.114,3,4)
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;;=D EHFLD^DIKCDD
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;;^DD(.114,3,21,0)
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;;=^^1^1^2980910^^
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;;^DD(.114,3,21,1,0)
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;;=If this cross-reference value is a field, answer with the field number.
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;;^DD(.114,3,"DT")
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;;=2970902
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;;^DD(.114,4,0)
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;;=COMPUTED VALUE^F^^1;1^K:$L(X)>245!($L(X)<1) X
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;;^DD(.114,4,3)
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;;=Answer must be a valid FileMan computed expression. Answer '??' for more help.
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;;^DD(.114,4,21,0)
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;;=^^2^2^2960221^
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;;^DD(.114,4,21,1,0)
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;;=If this cross-reference value is computed, answer with the computed
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;;^DD(.114,4,21,2,0)
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;;=expression that evaluates to it.
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;;^DD(.114,4,"DT")
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;;=2960219
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;;^DD(.114,4.5,0)
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;;=COMPUTED CODE^K^^1.5;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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;;^DD(.114,4.5,3)
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;;=This is Standard MUMPS code. Answer '??' for more help.
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;;^DD(.114,4.5,9)
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;;=@
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;;^DD(.114,4.5,21,0)
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;;=^^3^3^2990401^
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;;^DD(.114,4.5,21,1,0)
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;;=Answer with M code that sets X equal to the cross-reference value. The
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;;^DD(.114,4.5,21,2,0)
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;;=X(order#) array is available for those cross-reference values with lower
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;;^DD(.114,4.5,21,3,0)
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;;=Order Numbers, and the DA array describes the IEN of the current record.
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;;^DD(.114,4.5,"DT")
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;;=2960221
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;;^DD(.114,5,0)
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;;=TRANSFORM FOR STORAGE^K^^2;E1,245^K:$L(X)>245 X D:$D(X) ^DIM
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;;^DD(.114,5,3)
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;;=This is Standard M code. Answer '??' for more help.
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;;^DD(.114,5,9)
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;;=@
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;;^DD(.114,5,21,0)
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;;=^^14^14^3000106^
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;;^DD(.114,5,21,1,0)
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;;=Used only when setting or killing an entry in the index.
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;;^DD(.114,5,21,2,0)
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;;=
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;;^DD(.114,5,21,3,0)
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;;=Answer should be M code that sets the variable X to a new value. X is the
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;;^DD(.114,5,21,4,0)
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;;=only input variable that is guaranteed to be defined and is equal to the
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;;^DD(.114,5,21,5,0)
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;;=internal value of the field.
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;;^DD(.114,5,21,6,0)
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;;=
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;;^DD(.114,5,21,7,0)
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;;=TRANSFORM FOR STORAGE can be used on field-type cross-reference values to
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;;^DD(.114,5,21,8,0)
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;;=transform the internal value of the field before it is stored as a
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;;^DD(.114,5,21,9,0)
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;;=subscript in the index.
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;;^DD(.114,5,21,10,0)
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;;=
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;;^DD(.114,5,21,11,0)
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;;=If a match is made on this index during a lookup, then in order to
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;;^DD(.114,5,21,12,0)
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;;=properly display the resulting index value to the user, the developer may
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;;^DD(.114,5,21,13,0)
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;;=need to enter code into the TRANSFORM FOR DISPLAY field to transform the
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;;^DD(.114,5,21,14,0)
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;;=index value back to a displayable format.
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;;^DD(.114,5,"DT")
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;;=2980731
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