[613] | 1 | HLCSDR2 ;ALB/RJS - HYBRID LOWER LAYER PROTOCOL UTILITIES 2.2 - ;08/22/2001 11:23
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| 2 | ;;1.6;HEALTH LEVEL SEVEN;**2,9,62,109**;Oct 13, 1995
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| 3 | Q
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| 4 | WRITE(HLDOUT0,HLDOUT1) ; This function writes a message from the Logical
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| 5 | ; Link file (#870) to the specified device in the following format:
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| 6 | ; <Start Block><Data Block><End Block>
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| 7 | ; The data block is the complete HL7 message terminated by a <CR>.
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| 8 | ; INPUT : HLDOUT0 - IFN of file 870
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| 9 | ; HLDOUT1 - IFN of Out Queue Multiple
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| 10 | ; OUTPUT: None
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| 11 | I HLDOUT0']""!(HLDOUT1']"") Q
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| 12 | ;-- HLLINE,HLC1,HLC2 are initialized in INITIZE
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| 13 | N HLCLN,HLCHK,I,X
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| 14 | D INITIZE
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| 15 | ;
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| 16 | ;-- write start block
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| 17 | S X=$C(HLDSTRT)_"D"_HLDVER_$C(13) D CHKSUM
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| 18 | U IO W X
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| 19 | ;
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| 20 | S HLWFLG=0
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| 21 | ;-- process and write data block
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| 22 | F S HLLINE=$$NEXTLINE^HLCSUTL(HLDOUT0,HLDOUT1,HLLINE,"HLCLN","OUT") Q:'HLLINE D
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| 23 | . S HLCHK=$$CHKSUM^HLCSUTL("HLCLN")
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| 24 | . S HLC2=HLC2_$C($P(HLCHK,U)),HLC1=HLC1+$P(HLCHK,U,2)
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| 25 | . I $E(HLCLN(1),1,3)="MSA" S HLWFLG=1
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| 26 | . ;U IO
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| 27 | . S I=0 F S I=$O(HLCLN(I)) Q:'I W $G(HLCLN(I))
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| 28 | . K HLCLN,HLCHK
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| 29 | ;
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| 30 | D CHKSUM1
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| 31 | ;-- store checksum values
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| 32 | D MONITOR(HLC1,4,HLDP,HLDOUT1,"OUT"),MONITOR(HLC2,5,HLDP,HLDOUT1,"OUT")
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| 33 | ;
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| 34 | S HLC1=$$RJ(HLC1,5)
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| 35 | S HLC2=$$RJ(HLC2,3)
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| 36 | ;
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| 37 | ;-- write end block
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| 38 | S X=HLC1_HLC2_$C(HLDEND)_$C(13)
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| 39 | U IO W X
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| 40 | Q
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| 41 | SETNODE(HLD0,HLD1,CR) ;
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| 42 | S HLLINE=HLLINE+1,^HLCS(870,HLD0,1,HLD1,1,HLLINE,0)=$G(X)
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| 43 | I CR="CR" S HLLINE=HLLINE+1,^HLCS(870,HLD0,1,HLD1,1,HLLINE,0)=""
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| 44 | Q
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| 45 | SETNODE2 ;
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| 46 | S HLLINE=HLLINE+1,^TMP("HLCSDR1",$J,HLDP,HLLINE)=$G(X)
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| 47 | Q
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| 48 | TRANS(HLTOUT,HLTRANS) ; This function returns the state of the read operation.
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| 49 | ; INPUT : HLTOUT - Data returned from read (Will contain TIMEOUT)
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| 50 | ; HLTRANS - Variable passed by reference containing how
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| 51 | ; the read was terminated.
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| 52 | ; OUTPUT: HLTRANS - Translation of read termination.
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| 53 | S HLTRANS=$S($G(HLTOUT)["TIMEOUT":"TIMEOUT",HLTRANS=0:"LONGLINE",HLTRANS=1:"SOH",HLTRANS=4:"EOT",HLTRANS=HLDSTRT:"VT",HLTRANS=13:"CR",HLTRANS=HLDEND:"FS",1:"OTHER")
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| 54 | I $D(HLTRACE) U IO(0) W !,"HLTRANS=",HLTRANS
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| 55 | Q
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| 56 | INITIZE ;Initialize Line counter and Checksum variables
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| 57 | S (HLLINE,HLC1)=0,HLC2=""
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| 58 | Q
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| 59 | NAK(HLTRANS) ; Send NAK
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| 60 | N HLDATA
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| 61 | D INITIZE
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| 62 | ;-- start block and data
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| 63 | S (X,HLDATA)=$C(HLDSTRT)_"N"_HLDVER_$C(13)_HLTRANS
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| 64 | D CHKSUM,CHKSUM1
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| 65 | S HLC1=$$RJ(HLC1,5)
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| 66 | S HLC2=$$RJ(HLC2,3)
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| 67 | ;-- end block
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| 68 | S X=HLDATA_HLC1_HLC2_$C(HLDEND)_$C(13)
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| 69 | U IO W X
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| 70 | Q
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| 71 | ACK ; Send ACK
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| 72 | N HLDATA
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| 73 | D INITIZE
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| 74 | ;-- start block and data
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| 75 | S (X,HLDATA)=$C(HLDSTRT)_"D"_HLDVER_$C(13)
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| 76 | D CHKSUM,CHKSUM1
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| 77 | S HLC1=$$RJ(HLC1,5)
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| 78 | S HLC2=$$RJ(HLC2,3)
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| 79 | ;-- end block
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| 80 | S X=HLDATA_HLC1_HLC2_$C(HLDEND)_$C(13)
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| 81 | U IO W X
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| 82 | Q
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| 83 | DUMP ;
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| 84 | Q:'$D(HLTRACE)
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| 85 | U IO(0)
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| 86 | W !,"DUMP"
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| 87 | I '$D(HLC1) S HLC1=-1
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| 88 | I '$D(HLC2) S HLC2=-1
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| 89 | I '$D(HLBLOCK) S HLBLOCK=-1
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| 90 | I '$D(HLXOR) S HLXOR=-1
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| 91 | W !,"HLC1=",HLC1," ","HLBLOCK=",HLBLOCK
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| 92 | W !,"HLC2=",HLC2," ","HLXOR=",HLXOR
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| 93 | Q
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| 94 | CHKSUM ;
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| 95 | X ^%ZOSF("LPC") S HLC1=HLC1+$L(X),HLC2=HLC2_$C(Y)
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| 96 | I $L(HLC2)>240 D CHKSUM1
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| 97 | Q
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| 98 | CHKSUM1 ;
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| 99 | S X=HLC2 X ^%ZOSF("LPC") S HLC2=Y
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| 100 | Q
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| 101 | VALID1(FLAG,CHK,HLIND0,HLIND1) ;
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| 102 | ;This function extracts the checksum sent with a message and then
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| 103 | ;compares it to the checksums that have been calculated and stored
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| 104 | ;in the HLC1 and HLC2 variables. HLC1 and HLC2 are not passed as
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| 105 | ;parameters, their scope is "communication server-wide"
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| 106 | ;FLAG tells the function what type of message this is, should the
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| 107 | ;last block of data be written to an "in queue" ? or a TMP variable ?
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| 108 | ;this depends on whether the incoming message is a message or just
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| 109 | ;a lower level acknowledgement "LLP-ACK"
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| 110 | ;CHK contains the 8 character cheksum that was sent with the message
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| 111 | ;HLIND0,HLIND1 are just D0 and D1 for the "input queue" in file #870
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| 112 | N HLBLOCK,HLXOR
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| 113 | ;WRITE LAST BLOCK 'O DATA TO GLOBAL
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| 114 | I $G(X)'="",FLAG="INCOMING MESSAGE" D SETNODE(HLIND0,HLIND1,HLTRANS),CHKSUM
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| 115 | I $G(X)'="",FLAG="LLP-ACK" D SETNODE2,CHKSUM
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| 116 | ;Extract checksums
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| 117 | S HLBLOCK=+$E(CHK,1,5),HLXOR=+$E(CHK,6,8)
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| 118 | D CHKSUM1,DUMP
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| 119 | S X="$$CHK$$^"_CHK_"^HLCHK^"_$$RJ(HLC1,5)_$$RJ(HLC2,3)
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| 120 | I FLAG="INCOMING MESSAGE" D MONITOR(HLBLOCK,5,HLDP,HLIND1,"IN"),MONITOR(HLXOR,6,HLDP,HLIND1,"IN"),MONITOR(HLC1,7,HLDP,HLIND1,"IN"),MONITOR(HLC2,8,HLDP,HLIND1,"IN")
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| 121 | I FLAG="LLP-ACK" D SETNODE2
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| 122 | I HLXOR="999" Q "VALID"
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| 123 | I HLBLOCK=HLC1,HLC2=HLXOR Q "VALID"
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| 124 | I HLBLOCK'=HLC1 Q "C"
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| 125 | I HLXOR'=HLC2 Q "X"
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| 126 | Q "G"
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| 127 | TRACE ;When HLTRACE is instantiated this subroutine simply writes out the
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| 128 | ;states that the finite state machine (Lower Layer Protocol) goes thru
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| 129 | Q:'$D(HLTRACE)
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| 130 | U IO(0) W !,"IN STATE ",HLNXST
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| 131 | Q
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| 132 | MONITOR(VALUE,PIECE,HLD0,HLD1,QUEUE) ;
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| 133 | ;This subroutine simply updates a particular piece in a global node
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| 134 | ;in file #870. It can be a zero node, or a node in a queue multiple
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| 135 | I '$D(^HLCS(870,HLD0,0)) Q
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| 136 | I $G(HLD1)']"" S $P(^HLCS(870,HLD0,0),U,PIECE)=VALUE Q
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| 137 | I PIECE=2,$G(QUEUE)="IN" D Q
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| 138 | . N HLJ
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| 139 | . S HLJ(870.019,HLD1_","_HLD0_",",1)=VALUE
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| 140 | . D FILE^HLDIE("","HLJ","","MONITOR","HLCSDR2") ; HL*1.6*109
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| 141 | S $P(^HLCS(870,HLD0,$S(QUEUE="IN":1,1:2),HLD1,0),U,PIECE)=VALUE
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| 142 | Q
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| 143 | FORMAT(HLC,LENGTH) ;Function to stuff leading zeroes for checksums
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| 144 | ;HLC is the checksum, Length is self-documenting
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| 145 | Q $E("00000",1,LENGTH-$L(HLC))
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| 146 | RJ(HLC,LENGTH) ;Function to stuff leading zeroes for checksums
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| 147 | ;HLC is the checksum, Length is self-documenting
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| 148 | ;Functionally equivalent to $$RJ^XLFSTR(HLC,LENGTH,"0")
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| 149 | ;Also equivalent to $$FORMAT(HLC,LENGTH)_HLC
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| 150 | Q $E("00000",1,LENGTH-$L(HLC))_HLC
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