1 | ENEQRP6 ;WIRMFO/SAB-PARENT SYSTEM/COMPONENT HIERARCHY REPORT ;6/4/97
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2 | ;;7.0;ENGINEERING;**35,42**;AUG 17, 1993
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3 | EN ; main entry point
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4 | ASKSYS ; ask system
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5 | S DIR(0)="Y",DIR("A")="Do you want a report for ALL systems"
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6 | S DIR("B")="NO"
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7 | S DIR("?",1)="Enter YES to generate a report for all systems."
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8 | S DIR("?",2)="The computer will identify all the topmost parent systems"
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9 | S DIR("?",3)="by looping through the entire equipment file. A complete"
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10 | S DIR("?",4)="system hierarchy will be printed for each of the topmost"
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11 | S DIR("?",5)="parent systems which includes all of their components."
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12 | S DIR("?",6)="It may take awhile to search the entire equipment file."
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13 | S DIR("?",7)=""
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14 | S DIR("?",8)="Enter NO to generate a report for just one system."
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15 | S DIR("?",9)=""
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16 | S DIR("?")="Enter YES or NO"
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17 | D ^DIR K DIR G:$D(DIRUT) EXIT
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18 | S EN("ALL")=Y
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19 | ;
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20 | I 'EN("ALL") F D G:ENDAP="^" EXIT Q:ENDAP]""
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21 | . S ENDAP=""
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22 | . D GETEQ^ENUTL I $D(DTOUT)!$D(DUOUT)!(Y'>0) S ENDAP="^" Q
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23 | . S ENDAP=+Y
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24 | . ; if entry is a component then offer to start with it's parent
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25 | . I $P($G(^ENG(6914,ENDAP,0)),U,3)]"" D Q:'ENDAP
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26 | . . S ENDA=ENDAP,I=0
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27 | . . F S X=$P($G(^ENG(6914,ENDA,0)),U,3) Q:X=""!(I>50) S ENDA=X,I=I+1
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28 | . . W:I>50 $C(7),!!,"Can't determine topmost parent system (>50 deep)."
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29 | . . I ENDAP'=ENDA D Q:ENDAP="^"
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30 | . . . W !!,"Equipment Entry #",ENDAP," ",$$GET1^DIQ(6914,ENDAP,6)
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31 | . . . W !,"is a component of Entry #",ENDA," ",$$GET1^DIQ(6914,ENDA,6)
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32 | . . . S DIR(0)="Y",DIR("B")="YES"
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33 | . . . S DIR("A")="Would you prefer to report on the parent system"
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34 | . . . S DIR("?")="Answer YES to start with the topmost parent system (includes components)."
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35 | . . . D ^DIR K DIR I $D(DIRUT) S ENDAP="^" Q
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36 | . . . I Y S ENDAP=ENDA
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37 | . ; make sure that selected system has components
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38 | . I '$O(^ENG(6914,"AE",ENDAP,0)) D Q:'ENDAP
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39 | . . W $C(7),!!,"Equipment Entry #",ENDAP," does not have any components"
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40 | . . S ENDAP=""
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41 | ;
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42 | ASKFLD ; ask fields to print
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43 | K ENFLD F I=1:1:2 S ENFLD(I)=""
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44 | W !!,"Select the 1st field (required) to print for each equipment item."
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45 | K DIC S DIC="^DD(6914,",DIC(0)="AQEM",DIC("B")="EQUIPMENT CATEGORY"
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46 | S DIC("S")="I ($P(^(0),U,2)'[""W"")&($P(^(0),U,2)'>0)"
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47 | D ^DIC K DIC I $D(DTOUT)!$D(DUOUT) G EXIT
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48 | I Y'>0 D G ASKFLD
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49 | . W $C(7),!!,"Select a field or enter '^' to quit."
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50 | S ENFLD(1)=+Y
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51 | S ENFLD(1,"L")=$$GET1^DID(6914,ENFLD(1),"","FIELD LENGTH")
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52 | S ENFLD(1,"N")=$$GET1^DID(6914,ENFLD(1),"","LABEL")
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53 | I ENFLD(1,"L")>20 D G:$D(DIRUT) EXIT
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54 | . W !!,"Field ",ENFLD(1,"N")," can be ",ENFLD(1,"L")," characters long."
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55 | . W !,"You may want to just print a portion of this field."
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56 | . S DIR(0)="N^1:"_ENFLD(1,"L")
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57 | . S DIR("A")="Number of characters to print",DIR("B")=20
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58 | . D ^DIR K DIR Q:$D(DIRUT)
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59 | . S ENFLD(1,"L")=Y
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60 | ;
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61 | W !!,"Select the 2nd field (optional) to print for each equipment item."
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62 | K DIC S DIC="^DD(6914,",DIC(0)="AQEM"
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63 | S DIC("S")="I ($P(^(0),U,2)'[""W"")&($P(^(0),U,2)'>0)"
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64 | D ^DIC K DIC I $D(DTOUT)!$D(DUOUT) G EXIT
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65 | I Y>0 D G:$D(DIRUT) EXIT
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66 | . S ENFLD(2)=+Y
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67 | . S ENFLD(2,"L")=$$GET1^DID(6914,ENFLD(2),"","FIELD LENGTH")
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68 | . S ENFLD(2,"N")=$$GET1^DID(6914,ENFLD(2),"","LABEL")
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69 | . I ENFLD(2,"L")>20 D Q:$D(DIRUT)
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70 | . . W !!,"Field ",ENFLD(2,"N")," can be ",ENFLD(2,"L")," characters long."
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71 | . . W !,"You may want to just print a portion of this field."
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72 | . . S DIR(0)="N^1:"_ENFLD(2,"L")
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73 | . . S DIR("A")="Number of characters to print",DIR("B")=20
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74 | . . D ^DIR K DIR Q:$D(DIRUT)
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75 | . . S ENFLD(2,"L")=Y
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76 | ;
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77 | ASKDEV ; ask device
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78 | S %ZIS="QM" D ^%ZIS G:POP EXIT
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79 | I $D(IO("Q")) D G EXIT
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80 | . S ZTRTN="QEN^ENEQRP6",ZTDESC="Parent System/Component Hierarchy Rpt"
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81 | . S ZTSAVE("ENDAP")="",ZTSAVE("ENFLD(")="",ZTSAVE("EN(")=""
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82 | . D ^%ZTLOAD,HOME^%ZIS K ZTSK
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83 | ;
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84 | QEN ; queued entry point
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85 | U IO
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86 | S (END,ENPG)=0 D NOW^%DTC S Y=% D DD^%DT S ENDT=Y
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87 | I 'EN("ALL") S ENDAP("CAT")=$$GET1^DIQ(6914,ENDAP,6)
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88 | K ENDL S $P(ENDL,"-",IOM+1)=""
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89 | K ENBL S $P(ENBL," ",IOM+1)=""
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90 | D HD
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91 | ;
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92 | BLDHI ; build hierarchy
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93 | K ^TMP($J)
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94 | S ENRT="^TMP("_$J_","
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95 | S ENMD=1
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96 | I 'EN("ALL") D GETC(ENDAP,"",ENRT) S ENT=1
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97 | I EN("ALL") D G:END WRAPUP
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98 | . ; loop thru equipment, identify topmost parents, determine hierarchy
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99 | . S ENC=0,ENT=0,ENDA=0
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100 | . F S ENDA=$O(^ENG(6914,ENDA)) Q:'ENDA D Q:END
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101 | . . S ENC=ENC+1
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102 | . . I '(ENC#1000) W:IO=IO(0) "." I $D(ZTQUEUED),$$S^%ZTLOAD S (ZTSTOP,END)=1 Q
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103 | . . Q:'$O(^ENG(6914,"AE",ENDA,0)) ; not a parent system
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104 | . . Q:$P($G(^ENG(6914,ENDA,0)),U,3)'="" ; not the topmost parent system
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105 | . . D GETC(ENDA,"",ENRT) S ENT=ENT+1
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106 | ; save total number of topmost parents processed
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107 | S @(ENRT_0_")")="SYSTEM/COMPONENT LIST"_U_DT_U_ENT
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108 | ;
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109 | PRTHI ; print hierarchy
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110 | ; compute indent to use for component levels
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111 | S Y=10+2+ENFLD(1,"L") ; ien and spaces and 1st field
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112 | S:ENFLD(2) Y=Y+3+ENFLD(2,"L") ; spaces and 2nd field
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113 | S ENIND=(IOM-Y)\ENMD
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114 | I ENIND>12 S ENIND=12
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115 | I ENIND<2 S ENIND=2
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116 | ;
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117 | S ENNODE=ENRT_0_")"
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118 | F S ENNODE=$Q(@ENNODE) Q:ENNODE="" Q:$QS(ENNODE,1)'=$J D Q:END
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119 | . S ENLVL=$QL(ENNODE),ENDA=$QS(ENNODE,ENLVL),ENC=+$G(@ENNODE)
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120 | . S ENCOL=ENIND*(ENLVL-2)
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121 | . I $Y+5>IOSL D HD Q:END D HDSYS
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122 | . S ENV(1)=$E($$GET1^DIQ(6914,ENDA,ENFLD(1)),1,ENFLD(1,"L"))
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123 | . S:ENFLD(2) ENV(2)=$E($$GET1^DIQ(6914,ENDA,ENFLD(2)),1,ENFLD(2,"L"))
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124 | . W !,?ENCOL,ENDA,?ENCOL+ENIND,ENV(1)
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125 | . W:ENFLD(2) $E(ENBL,1,ENFLD(1,"L")-$L(ENV(1)))," ",ENV(2)
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126 | . I ENC W " (",ENC," comp.)"
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127 | WRAPUP ;
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128 | I END W !!,"REPORT STOPPED BY USER REQUEST"
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129 | E D
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130 | . W !!,"END OF REPORT"
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131 | . I $E(IOST,1,2)="C-" S DIR(0)="E" D ^DIR K DIR
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132 | D ^%ZISC
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133 | ;
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134 | EXIT ;
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135 | I $D(ZTQUEUED) S ZTREQ="Q"
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136 | K ^TMP($J)
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137 | K DIC,DIR,DIROUT,DIRUT,DTOUT,DUOUT,X,Y
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138 | K EN,ENC,ENCOL,ENDA,ENDAP,ENFLD,ENIND,ENLVL,ENMD,ENNODE,ENRT,ENT,ENV
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139 | K ENBL,END,ENDL,ENDT,ENPG
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140 | Q
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141 | HD ; header
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142 | I $D(ZTQUEUED),$$S^%ZTLOAD S (ZTSTOP,END)=1 Q
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143 | I $E(IOST,1,2)="C-",ENPG S DIR(0)="E" D ^DIR K DIR I 'Y S END=1 Q
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144 | I $E(IOST,1,2)="C-"!ENPG W @IOF
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145 | S ENPG=ENPG+1
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146 | W !,"PARENT SYSTEM/COMPONENT HIERARCHY",?48,ENDT,?72,"page ",ENPG
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147 | W !,"for "
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148 | I EN("ALL") W "ALL SYSTEMS"
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149 | E W "SYSTEM with ENTRY #",ENDAP," ",ENDAP("CAT")
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150 | W !," print field(s): ",ENFLD(1,"N")
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151 | W:ENFLD(2) " and ",ENFLD(2,"N")
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152 | W !,ENDL
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153 | Q
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154 | HDSYS ; header for continued system
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155 | F I=2:1:ENLVL-1 W !,?(ENIND*(I-2)),$QS(ENNODE,I)," (continued)"
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156 | Q
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157 | ;
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158 | GETC(ENDAP,ENPL,ENRT) ; Get All Components Under a Parent System
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159 | ; Input
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160 | ; ENDAP - ien of parent system (e.g. 1024)
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161 | ; ENPL - ien list of parent systems above ENDAP (e.g. 150,7019,10,)
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162 | ; ENRT - root of array to store hierarchy in (e.g. X( or ^TMP($J,)
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163 | ; ENMD - maximum depth reached
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164 | ; Output
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165 | ; ENMD - maximum depth reached
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166 | ; ^TMP($J,parent ien)=# of components
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167 | ; ^TMP($J,parent ien,component ien)=""
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168 | N ENDAC,ENC,Y
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169 | ; init component counter
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170 | S ENC=0
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171 | ; loop thru components of parent system ENDAP
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172 | S ENDAC=0 F S ENDAC=$O(^ENG(6914,"AE",ENDAP,ENDAC)) Q:'ENDAC D
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173 | . ; check for endless loop
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174 | . I ","_ENPL_ENDAP_","[(","_ENDAC_",") D Q
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175 | . . W !,"ERROR - ENDLESS LOOP DETECTED - SKIPPING ENTRY"
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176 | . . W !," Entry #",ENDAC," already is a parent in ",ENPL_ENDAP_","
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177 | . ; save component
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178 | . S @(ENRT_ENPL_ENDAP_","_ENDAC_")")="",ENC=ENC+1
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179 | . ; see if previous maximum depth exceeded
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180 | . S Y=$L(ENPL_ENDAP_","_ENDAC,",") I Y>ENMD S ENMD=Y
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181 | . ; if component has components then get them also
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182 | . I $O(^ENG(6914,"AE",ENDAC,0)) D GETC(ENDAC,ENPL_ENDAP_",",ENRT)
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183 | ; save parent system component count
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184 | S @(ENRT_ENPL_ENDAP_")")=ENC
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185 | Q
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186 | ;ENEQRP6
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