source: ccr/trunk/p/GPLRIMA.m@ 348

Last change on this file since 348 was 348, checked in by George Lilly, 15 years ago

updates for parms

File size: 19.7 KB
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1GPLRIMA ; CCDCCR/GPL - RIM REPORT ROUTINES; 6/6/08
2 ;;0.1;CCDCCR;nopatch;noreleasedate
3 ;Copyright 2008 WorldVistA. Licensed under the terms of the GNU
4 ;General Public License See attached copy of the License.
5 ;
6 ;This program is free software; you can redistribute it and/or modify
7 ;it under the terms of the GNU General Public License as published by
8 ;the Free Software Foundation; either version 2 of the License, or
9 ;(at your option) any later version.
10 ;
11 ;This program is distributed in the hope that it will be useful,
12 ;but WITHOUT ANY WARRANTY; without even the implied warranty of
13 ;MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 ;GNU General Public License for more details.
15 ;
16 ;You should have received a copy of the GNU General Public License along
17 ;with this program; if not, write to the Free Software Foundation, Inc.,
18 ;51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
19 ;
20 ; THESE ROUTINES EXAMINE ONE OR MORE, UP TO ALL, OF THE PATIENTS ON THE
21 ; SYSTEM TO DETERMINE HOW COMPLETE THE RESULTING CCR OR CCD WOULD BE FOR
22 ; THESE PATIENTS. IT BEGINS TO MEASURE "HL7 RIM COHERENCE" WHICH IS HOW USEFUL
23 ; THE VARIABLES WILL BE TO A RIM-MODELED APPLICATION AFTER THEY ARE
24 ; CONVEYED VIA THE CCR OR CCD.
25 ; FACTORS THAT AFFECT RIM COHERENCE INCLUDE:
26 ; 1. THE PRESENSE OF CLINICAL DATA IN A SECTION
27 ; 2. ARE THE DATA ELEMENTS TIME-BOUND
28 ; 3. ARE THE DATA ELEMENTS CODED WITH SNOMED OR LOINC ETC
29 ; 4. ARE SOURCE ACTORS ASSOCIATED WITH THE DATA ELEMENTS
30 ; 5. ARE ACTORS IDENTIFIED REGARDING THEIR ROLE
31 ; .. AND OTHER FACTORS YET TO BE DETERMINED
32 ;
33 ; SINCE THESE MEASUREMENTS ARE DONE AT THE VARIABLE LEVEL, THEY
34 ; REFLECT ON RIM COHERENCE WHETHER THE CCR OR THE CCD IS USED FOR
35 ; CONVEYANCE TO THE RIM APPLICATION.
36 ;
37 ;
38ANALYZE(BEGDFN,DFNCNT,APARMS) ; RIM COHERANCE ANALYSIS ROUTINE
39 ; BEGINS AT BEGDFN AND GOES FOR DFNCNT PATIENTS
40 ; TO RESUME AT NEXT PATIENT, USE BEGDFN=""
41 ; USE RESET^GPLRIMA TO RESET TO TOP OF PATIENT LIST
42 ; APARMS ARE PARAMETERS TO BE USED IN THE EXTRACTION
43 ; SEE C0CPARMS FOR SUPPORTED PARAMTERS
44 ;
45 N RIMARY,RIMTMP,RIMI,RIMDFN,RATTR
46 N CCRGLO
47 D ASETUP ; SET UP VARIABLES AND GLOBALS
48 D AINIT ; INITIALIZE ATTRIBUTE VALUE TABLE
49 I '$D(@RIMBASE@("RESUME")) S @RIMBASE@("RESUME")=$O(^DPT(0)) ; FIRST TIME
50 S RESUME=@RIMBASE@("RESUME") ; WHERE WE LEFT OFF LAST RUN
51 S RIMDFN=BEGDFN ; BEGIN WITH THE BEGDFN PATIENT
52 I RIMDFN="" S RIMDFN=RESUME
53 I +RIMDFN=0 D Q ; AT THE END OF THE PATIENTS
54 . W "END OF PATIENT LIST, CALL RESET^GPLRIMA",!
55 I '$D(APARMS) S APARMS="" ; DEFAULT NO OVERRIDE PARMS
56 F RIMI=1:1:DFNCNT D Q:+RIMDFN=0 ; FOR DFNCNT NUMBER OF PATIENTS OR END
57 . K @RIMBASE@("VARS",RIMDFN) ; CLEAR OUT OLD VARS
58 . D CCRRPC^GPLCCR(.CCRGLO,RIMDFN,APARMS,"CCR") ;PROCESS THE CCR
59 . W RIMDFN,!
60 . ;
61 . ; COPY ALL THE VARIABLES TO THE RIM MAP AREA INDEXED BY PATIENT
62 . ;
63 . I $D(^TMP("GPLCCR",$J,"PROBVALS",1)) D ; PROBLEM VARS EXISTS
64 . . M @RIMBASE@("VARS",RIMDFN,"PROBLEMS")=^TMP("GPLCCR",$J,"PROBVALS")
65 . . S @RIMBASE@("VARS",RIMDFN,"PROBLEMS",0)=^TMP("GPLCCR",$J,"PROBVALS",0)
66 . I $D(^TMP("GPLCCR",$J,"VITALS",1)) D ; VITALS VARS EXISTS
67 . . M @RIMBASE@("VARS",RIMDFN,"VITALS")=^TMP("GPLCCR",$J,"VITALS")
68 . I $D(^TMP("GPLCCR",$J,"MEDMAP",1)) D ; MEDS VARS EXISTS
69 . . M @RIMBASE@("VARS",RIMDFN,"MEDS")=^TMP("GPLCCR",$J,"MEDMAP")
70 . I $D(^TMP("GPLCCR",$J,"ALERTS",1,"ALERTOBJECTID")) D ; ALERTS EXIST
71 . . W "FOUND ALERT VARS",!
72 . . M @RIMBASE@("VARS",RIMDFN,"ALERTS")=^TMP("GPLCCR",$J,"ALERTS")
73 . I $D(^TMP("GPLCCR",$J,"RESULTS",0)) D ; RESULTS EXIST
74 . . W "FOUND RESULTS VARS",!
75 . . M @RIMBASE@("VARS",RIMDFN,"RESULTS")=^TMP("GPLCCR",$J,"RESULTS")
76 . K ^TMP("GPLCCR",$J) ; KILL WORK AREA FOR CCR BUILDING
77 . ;
78 . ; EVALUATE THE VARIABLES AND CREATE AN ATTRIBUTE MAP
79 . ;
80 . S RATTR=$$SETATTR(RIMDFN) ; SET THE ATTRIBUTE STRING BASED ON THE VARS
81 . S @RIMBASE@("ATTR",RIMDFN)=RATTR ; SAVE THE ATRIBUTES FOR THIS PAT
82 . ;
83 . ; INCREMENT THE COUNT OF PATIENTS WITH THESE ATTRIBUTES IN ATTRTBL
84 . ;
85 . ; I '$D(@RIMBASE@("ATTRTBL",RATTR)) D ; IF FIRST PAT WITH THESE ATTRS
86 . ; . S @RIMBASE@("ATTRTBL",RATTR)=0 ; DEFAULT VALUE TO BE INCREMENTED
87 . ; S @RIMBASE@("ATTRTBL",RATTR)=@RIMBASE@("ATTRTBL",RATTR)+1 ; INCREMENT
88 . ;
89 . N CATNAME,CATTBL
90 . ; S CATBASE=$NA(@RIMBASE@("ANALYSIS"))
91 . S CATNAME=""
92 . D CPUSH(.CATNAME,RIMBASE,"RIMTBL",RIMDFN,RATTR) ; ADD TO CATEGORY
93 . W "CATEGORY NAME: ",CATNAME,!
94 . ;
95 . F S RIMDFN=$O(^DPT(RIMDFN)) Q:'$$PTST^CCRSYS(RIMDFN) ; NEXT PATIENT
96 . ; PTST TESTS TO SEE IF PATIENT WAS MERGED
97 . ; IF CCRTEST=0, PTST WILL CHECK TO SEE IF THIS IS A TEST PATIENT
98 . ; AND WE SKIP IT
99 . S @RIMBASE@("RESUME")=RIMDFN ; WHERE WE ARE LEAVING OFF THIS RUN
100 ; D PARY^GPLXPATH(@RIMBASE@("ATTRTBL"))
101 Q
102 ;
103SETATTR(SDFN) ; SET ATTRIBUTES BASED ON VARS
104 N SBASE,SATTR
105 S SBASE=$NA(@RIMBASE@("VARS",SDFN))
106 D APOST("SATTR","RIMTBL","HEADER")
107 I $D(@SBASE@("PROBLEMS",1)) D ;
108 . D APOST("SATTR","RIMTBL","PROBLEMS")
109 . ; W "POSTING PROBLEMS",!
110 I $D(@SBASE@("VITALS",1)) D APOST("SATTR","RIMTBL","VITALS")
111 I $D(@SBASE@("MEDS",1)) D ; IF THE PATIENT HAS MEDS VARIABLES
112 . D APOST("SATTR","RIMTBL","MEDS")
113 . N ZR,ZI
114 . D GETPA(.ZR,SDFN,"MEDS","MEDPRODUCTNAMECODEVALUE") ;CHECK FOR MED CODES
115 . I ZR(0)>0 D ; VAR LOOKUP WAS GOOD, CHECK FOR NON=NULL RETURN
116 . . F ZI=1:1:ZR(0) D ; LOOP THROUGH RETURNED VAR^VALUE PAIRS
117 . . . I $P(ZR(ZI),"^",2)'="" D APOST("SATTR","RIMTBL","MEDSCODE") ;CODES
118 . ; D PATD^GPLRIMA(2,"MEDS","MEDPRODUCTNAMECODEVALUE") CHECK FOR MED CODES
119 I $D(@SBASE@("ALERTS",1)) D ; IF THE PATIENT HAS ALERTS
120 . D APOST("SATTR","RIMTBL","ALERTS")
121 . N ZR,ZI
122 . D GETPA(.ZR,SDFN,"ALERTS","ALERTAGENTPRODUCTCODEVALUE") ;REACTANT CODES
123 . I ZR(0)>0 D ; VAR LOOKUP WAS GOOD, CHECK FOR NON=NULL RETURN
124 . . F ZI=1:1:ZR(0) D ; LOOP THROUGH RETURNED VAR^VALUE PAIRS
125 . . . I $P(ZR(ZI),"^",2)'="" D APOST("SATTR","RIMTBL","ALERTSCODE") ;CODES
126 I $D(@SBASE@("RESULTS",1)) D ; IF THE PATIENT HAS LABS VARIABLES
127 . D APOST("SATTR","RIMTBL","RESULTS")
128 . N ZR,ZI
129 . S ZR(0)=0 ; INITIALIZE TO NONE
130 . D RPCGV(.ZR,SDFN,"RESULTS") ;CHECK FOR LABS CODES
131 . ; D PARY^GPLXPATH("ZR") ;
132 . I ZR(0)>0 D ; VAR LOOKUP WAS GOOD, CHECK FOR NON=NULL RETURN
133 . . F ZI=1:1:ZR(0) D ; LOOP THROUGH RETURNED VAR^VALUE PAIRS
134 . . . I $P(ZR(ZI),"^",2)="RESULTTESTCODINGSYSTEM" D ; LOINC CODE CHECK
135 . . . . I $P(ZR(ZI),"^",3)="LOINC" D APOST("SATTR","RIMTBL","RESULTSLN") ;
136 ; D APOST("SATTR","RIMTBL","NOTEXTRACTED") ; OUTPUT NOT YET PRODUCED
137 W "ATTRIBUTES: ",SATTR,!
138 Q SATTR
139 ;
140RESET ; KILL RESUME INDICATOR TO START OVER. ALSO KILL RIM TMP VALUES
141 K ^TMP("GPLRIM","RESUME")
142 K ^TMP("GPLRIM")
143 Q
144 ;
145CLIST ; LIST THE CATEGORIES
146 ;
147 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
148 N CLBASE,CLNUM,ZI,CLIDX
149 S CLBASE=$NA(@RIMBASE@("RIMTBL","CATS"))
150 S CLNUM=@CLBASE@(0)
151 F ZI=1:1:CLNUM D ; LOOP THROUGH THE CATEGORIES
152 . S CLIDX=@CLBASE@(ZI)
153 . W "(",$P(@CLBASE@(CLIDX),"^",1)
154 . W ":",$P(@CLBASE@(CLIDX),"^",2),") "
155 . W CLIDX,!
156 ; D PARY^GPLXPATH(CLBASE)
157 Q
158 ;
159CPUSH(CATRTN,CBASE,CTBL,CDFN,CATTR) ; ADD PATIENTS TO CATEGORIES
160 ; AND PASS BACK THE NAME OF THE CATEGORY TO WHICH THE PATIENT
161 ; WAS ADDED IN CATRTN, WHICH IS PASSED BY REFERENCE
162 ; CBASE IS WHERE TO PUT THE CATEGORIES PASSED BY NAME
163 ; CTBL IS THE NAME OF THE TABLE USED TO CREATE THE ATTRIBUTES,
164 ; PASSED BY NAME AND USED TO CREATE CATEGORY NAMES IE "@CTBL_X"
165 ; WHERE X IS THE CATEGORY NUMBER. CTBL(0) IS THE NUMBER OF CATEGORIES
166 ; CATBL(X)=CATTR STORES THE ATTRIBUTE IN THE CATEGORY
167 ; CDFN IS THE PATIENT DFN, CATTR IS THE ATTRIBUTE STRING
168 ; THE LIST OF PATIENTS IN A CATEGORY IS STORED INDEXED BY CATEGORY
169 ; NUMBER IE CTBL_X(CDFN)=""
170 ;
171 ; N CCTBL,CENTRY,CNUM,CCOUNT,CPATLIST
172 S CCTBL=$NA(@CBASE@(CTBL,"CATS"))
173 W "CBASE: ",CCTBL,!
174 ;
175 I '$D(@CCTBL@(CATTR)) D ; FIRST PATIENT IN THIS CATEGORY
176 . D PUSH^GPLXPATH(CCTBL,CATTR) ; ADD THE CATEGORY TO THE ARRAY
177 . S CNUM=@CCTBL@(0) ; ARRAY ENTRY NUMBER FOR THIS CATEGORY
178 . S CENTRY=CTBL_"_"_CNUM_U_0 ; TABLE ENTRY DEFAULT
179 . S @CCTBL@(CATTR)=CENTRY ; DEFAULT NON INCREMENTED TABLE ENTRY
180 . ; NOTE THAT P1 IS THE CATEGORY NAME MADE UP OF THE TABLE NAME
181 . ; AND CATGORY ARRAY NUMBER. P2 IS THE COUNT WHICH IS INITIALLY 0
182 ;
183 S CCOUNT=$P(@CCTBL@(CATTR),U,2) ; COUNT OF PATIENTS IN THIS CATEGORY
184 S CCOUNT=CCOUNT+1 ; INCREMENT THE COUNT
185 S $P(@CCTBL@(CATTR),U,2)=CCOUNT ; PUT IT BACK
186 ;
187 S CATRTN=$P(@CCTBL@(CATTR),U,1) ; THE CATEGORY NAME WHICH IS RETURNED
188 ;
189 S CPATLIST=$NA(@CBASE@(CTBL,"PATS",CATRTN)) ; BASE OF PAT LIST FOR THIS CAT
190 W "PATS BASE: ",CPATLIST,!
191 S @CPATLIST@(CDFN)="" ; ADD THIS PATIENT TO THE CAT PAT LIST
192 ;
193 Q
194 ;
195CCOUNT ; RECOUNT THE CATEGORIES.. USE IN CASE OF RESTART OF ANALYZE
196 ;
197 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
198 N ZI,ZJ,ZCNT,ZIDX,ZCAT,ZATR,ZTOT
199 S ZCBASE=$NA(@RIMBASE@("RIMTBL","CATS")) ; BASE OF CATEGORIES
200 S ZPBASE=$NA(@RIMBASE@("RIMTBL","PATS")) ; BASE OF PATIENTS
201 S ZTOT=0 ; INITIALIZE OVERALL TOTAL
202 F ZI=1:1:@ZCBASE@(0) D ; FOR ALL CATS
203 . S ZCNT=0
204 . S ZATR=@ZCBASE@(ZI) ; THE ATTRIBUTE OF THE CATEGORY
205 . S ZCAT=$P(@ZCBASE@(ZATR),"^",1) ; USE IT TO LOOK UP THE CATEGORY NAME
206 . ; S ZIDX=$O(@ZPBASE@(ZCAT,"")) ; FIRST PATIENT IN LIST
207 . ; F ZJ=0:0 D Q:$O(@ZPBASE@(ZCAT,ZIDX))="" ; ALL PATIENTS IN THE LISTS
208 . ; . S ZCNT=ZCNT+1 ; INCREMENT THE COUNT
209 . ; . W ZCAT," DFN:",ZIDX," COUNT:",ZCNT,!
210 . ; . S ZIDX=$O(@ZPBASE@(ZCAT,ZIDX))
211 . S ZCNT=$$CNTLST($NA(@ZPBASE@(ZCAT)))
212 . S $P(@ZCBASE@(ZATR),"^",2)=ZCNT ; UPDATE THE COUNT IN THE CAT RECORD
213 . S ZTOT=ZTOT+ZCNT
214 W "TOTAL: ",ZTOT,!
215 Q
216 ;
217CNTLST(INLST) ; RETURNS THE NUMBER OF ELEMENTS IN THE LIST
218 ; INLST IS PASSED BY NAME
219 N ZI,ZDX,ZCOUNT
220 W INLST,!
221 S ZCOUNT=0
222 S ZDX=""
223 F ZI=$O(@INLST@(ZDX)):0 D Q:$O(@INLST@(ZDX))="" ; LOOP UNTIL THE END
224 . S ZCOUNT=ZCOUNT+1
225 . S ZDX=$O(@INLST@(ZDX))
226 . W "ZDX:",ZDX," ZCNT:",ZCOUNT,!
227 Q ZCOUNT
228 ;
229XCPAT(CPATCAT) ; EXPORT TO FILE ALL PATIENTS IN CATEGORY CPATCAT
230 ;
231 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
232 N ZI,ZJ,ZC,ZPATBASE
233 S ZPATBASE=$NA(@RIMBASE@("RIMTBL","PATS",CPATCAT))
234 S ZI=""
235 F ZJ=0:0 D Q:$O(@ZPATBASE@(ZI))="" ; TIL END
236 . S ZI=$O(@ZPATBASE@(ZI))
237 . D XPAT^GPLCCR(ZI,"","") ; EXPORT THE PATIENT TO A FILE
238 Q
239 ;
240CPAT(CPATCAT) ; SHOW PATIENT DFNS FOR A CATEGORY CPATCAT
241 ;
242 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
243 N ZI,ZJ,ZC,ZPATBASE
244 S ZC=0 ; COUNT FOR SPACING THE PRINTOUT
245 S ZPATBASE=$NA(@RIMBASE@("RIMTBL","PATS",CPATCAT))
246 S ZI=""
247 F ZJ=0:0 D Q:$O(@ZPATBASE@(ZI))="" ; TIL END
248 . S ZI=$O(@ZPATBASE@(ZI))
249 . S ZC=ZC+1 ; INCREMENT OUTPUT PER LINE COUNT
250 . W ZI," "
251 . I ZC=10 D ; NEW LINE
252 . . S ZC=0
253 . . W !
254 Q
255 ;
256PATC(DFN) ; DISPLAY THE CATEGORY FOR THIS PATIENT
257 ;
258 N ATTR S ATTR=""
259 I '$D(^TMP("GPLRIM","ATTR",DFN)) D ; RIM VARS NOT PRESENT
260 . D ANALYZE(DFN,1) ; EXTRACT THE RIM VARIABLE FOR THIS PATIENT
261 S ATTR=^TMP("GPLRIM","ATTR",DFN)
262 I ATTR="" W "THIS PATIENT NOT ANALYZED.",! Q ;NO ATTRIBUTES FOUND
263 I $D(^TMP("GPLRIM","RIMTBL","CATS",ATTR)) D ; FOUND A CAT
264 . N CAT
265 . S CAT=$P(^TMP("GPLRIM","RIMTBL","CATS",ATTR),U,1) ; LOOK UP THE CAT
266 . W CAT,": ",ATTR,!
267 Q
268 ;
269APUSH(AMAP,AVAL) ; ADD AVAL TO ATTRIBUTE MAP AMAP (AMAP PASSED BY NAME)
270 ; AMAP IS FORMED FOR ARRAY ACCESS: AMAP(0) IS THE COUNT
271 ; AND AMAP(N)=AVAL IS THE NTH AVAL
272 ; ALSO HASH ACCESS AMAP(AVAL)=N WHERE N IS THE ASSIGNED ORDER OF THE
273 ; MAP VALUE. INSTANCES OF THE MAP WILL USE $P(X,U,N)=AVAL TO PLACE
274 ; THE ATTRIBUTE IN ITS RIGHT PLACE. THE ATTRIBUTE VALUE IS STORED
275 ; SO THAT DIFFERENT MAPS CAN BE AUTOMATICALLY CROSSWALKED
276 ;
277 I '$D(@AMAP) D ; IF THE MAP DOES NOT EXIST
278 . S @AMAP@(0)=0 ; HAS ZERO ELEMENTS
279 S @AMAP@(0)=@AMAP@(0)+1 ;INCREMENT ELEMENT COUNT
280 S @AMAP@(@AMAP@(0))=AVAL ; ADD THE VALUE TO THE ARRAY
281 S @AMAP@(AVAL)=@AMAP@(0) ; ADD THE VALUE TO THE HASH WITH ARRAY REF
282 Q
283 ;
284ASETUP ; SET UP GLOBALS AND VARS RIMBASE AND RIMTBL
285 I '$D(RIMBASE) S RIMBASE=$NA(^TMP("GPLRIM"))
286 I '$D(@RIMBASE) S @RIMBASE=""
287 I '$D(RIMTBL) S RIMTBL=$NA(^TMP("GPLRIM","RIMTBL","TABLE")) ; ATTR TABLE
288 S ^TMP("GPLRIM","TABLES","RIMTBL")=RIMTBL ; TABLE OF TABLES
289 Q
290 ;
291AINIT ; INITIALIZE ATTRIBUTE TABLE
292 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
293 K @RIMTBL
294 D APUSH(RIMTBL,"EXTRACTED")
295 D APUSH(RIMTBL,"NOTEXTRACTED")
296 D APUSH(RIMTBL,"HEADER")
297 D APUSH(RIMTBL,"NOPCP")
298 D APUSH(RIMTBL,"PCP")
299 D APUSH(RIMTBL,"PROBLEMS")
300 D APUSH(RIMTBL,"PROBCODE")
301 D APUSH(RIMTBL,"PROBNOCODE")
302 D APUSH(RIMTBL,"PROBDATE")
303 D APUSH(RIMTBL,"PROBNODATE")
304 D APUSH(RIMTBL,"VITALS")
305 D APUSH(RIMTBL,"VITALSCODE")
306 D APUSH(RIMTBL,"VITALSNOCODE")
307 D APUSH(RIMTBL,"VITALSDATE")
308 D APUSH(RIMTBL,"VITALSNODATE")
309 D APUSH(RIMTBL,"MEDS")
310 D APUSH(RIMTBL,"MEDSCODE")
311 D APUSH(RIMTBL,"MEDSNOCODE")
312 D APUSH(RIMTBL,"MEDSDATE")
313 D APUSH(RIMTBL,"MEDSNODATE")
314 D APUSH(RIMTBL,"ALERTS")
315 D APUSH(RIMTBL,"ALERTSCODE")
316 D APUSH(RIMTBL,"RESULTS")
317 D APUSH(RIMTBL,"RESULTSLN")
318 Q
319 ;
320APOST(PRSLT,PTBL,PVAL) ; POST AN ATTRIBUTE PVAL TO PRSLT USING PTBL
321 ; PSRLT AND PTBL ARE PASSED BY NAME. PVAL IS A STRING
322 ; PTBL IS THE NAME OF A TABLE IN @RIMBASE@("TABLES") - "RIMTBL"=ALL VALUES
323 ; PVAL WILL BE PLACED IN THE STRING PRSLT AT $P(X,U,@PTBL@(PVAL))
324 I '$D(RIMBASE) D ASETUP ; FOR COMMANDLINE PROCESSING
325 N USETBL
326 I '$D(@RIMBASE@("TABLES",PTBL)) D Q ; NO TABLE
327 . W "ERROR NO SUCH TABLE",!
328 S USETBL=@RIMBASE@("TABLES",PTBL)
329 S $P(@PRSLT,U,@USETBL@(PVAL))=PVAL
330 Q
331GETPA(RTN,DFN,ISEC,IVAR) ; RETURNS ARRAY OF RIM VARIABLES FOR PATIENT DFN
332 ; EXAMPLE: D GETPA(.RT,2,"MEDS","MEDSSTATUSTEXT")
333 ; RETURNS AN ARRAY RT OF VALUES OF MEDSTATUSTEXT FOR PATIENT 2 IN P2
334 ; IN SECTION "MEDS"
335 ; P1 IS THE IEN OF THE MED WITH THE VALUE IE 2^PENDING WOULD BE STATUS
336 ; PENDING FOR MED 2 FOR PATIENT 2
337 ; RT(0) IS THE COUNT OF HOW MANY IN THE ARRAY. NULL VALUES ARE
338 ; RETURNED. RTN IS PASSED BY REFERENCE
339 ;
340 S RTN(0)=0 ; SET NULL DEFAULT RETURN VALUE
341 I '$D(RIMBASE) D AINIT ; INITIALIZE GLOBAL NAMES AND TABLES
342 S ZVBASE=$NA(@RIMBASE@("VARS")) ; BASE OF VARIABLES
343 I '$D(@ZVBASE@(DFN,ISEC,0)) D Q ; NO VARIABLES IN SECTION
344 . W "NO VARIABLES IN THIS SECTION FOR PATIENT ",DFN,!
345 N ZZI,ZZS
346 S ZZS=$NA(@ZVBASE@(DFN,ISEC)) ; SECTION VARIABLE ARRAY FOR THIS PATIENT
347 ; ZWR @ZZS@(1)
348 S RTN(0)=@ZZS@(0)
349 F ZZI=1:1:RTN(0) D ; FOR ALL PARTS OF THIS SECTION ( IE FOR ALL MEDS)
350 . S $P(RTN(ZZI),"^",1)=ZZI ; INDEX FOR VARIABLE
351 . S $P(RTN(ZZI),"^",2)=@ZZS@(ZZI,IVAR) ; THE VALUE OF THE VARIABLE
352 Q
353 ;
354PATD(DFN,ISEC,IVAR) ; DISPLAY FOR PATIENT DFN THE VARIABLE IVAR
355 ;
356 N ZR
357 D GETPA(.ZR,DFN,ISEC,IVAR)
358 I $D(ZR(0)) D PARY^GPLXPATH("ZR")
359 E W "NOTHING RETURNED",!
360 Q
361 ;
362CAGET(RTN,IATTR) ;
363 ; GETPA LOOKS AT RIMTBL TO FIND PATIENTS WITH ATTRIBUTE IATTR
364 ; IT DOES NOT SEARCH ALL PATIENTS, ONLY THE ONES WITH THE ATTRIBUTE
365 ; IT RETURNS AN ARRAY OF THE VALUES OF VARIABLE IVAR IN SECTION ISEC
366 Q
367 ;
368PCLST(LSTRTN,IATTR) ; RETURNS ARRAY OF PATIENTS WITH ATTRIBUTE IATTR
369 ;
370 I '$D(RIMBASE) D AINIT ; INITIALIZE GLOBAL NAMES AND TABLES
371 N ZLST
372 S LSTRTN(0)=0 ; DEFAULT RETURN NONE
373 S ZCBASE=$NA(@RIMBASE@("RIMTBL","CATS")) ; BASE OF CATEGORIES
374 S ZPBASE=$NA(@RIMBASE@("RIMTBL","PATS")) ; BASE OF PATIENTS
375 N ZNC ; ZNC IS NUMBER OF CATEGORIES
376 S ZNC=@ZCBASE@(0)
377 I ZNC=0 Q ; NO CATEGORIES TO SEARCH
378 N ZAP ; ZAP IS THE PIECE INDEX OF THE ATTRIBUTE IN THE RIM ATTR TABLE
379 S ZAP=@RIMBASE@("RIMTBL","TABLE",IATTR)
380 N ZI,ZCATTBL,ZATBL,ZCNT,ZPAT
381 F ZI=1:1:ZNC D ; FOR ALL CATEGORIES
382 . S ZATBL=@ZCBASE@(ZI) ; PULL OUT ATTR TBL FOR CAT
383 . I $P(ZATBL,"^",ZAP)'="" D ; CAT HAS ATTR
384 . . S ZCATTBL=$P(@ZCBASE@(ZATBL),"^",1) ; NAME OF TBL
385 . . M LSTRTN=@ZPBASE@(ZCATTBL) ; MERGE PATS FROM CAT
386 S ZCNT=0 ; INITIALIZE COUNT OF PATIENTS
387 S ZPAT=0 ; START AT FIRST PATIENT IN LIST
388 F S ZPAT=$O(LSTRTN(ZPAT)) Q:ZPAT="" D ;
389 . S ZCNT=ZCNT+1
390 S LSTRTN(0)=ZCNT ; COUNT OF PATIENTS IN ARRAY
391 Q
392 ;
393DCPAT(CATTR) ; DISPLAY LIST OF PATIENTS WITH ATTRIBUTE CATTR
394 ;
395 N ZR
396 D PCLST(.ZR,CATTR)
397 I ZR(0)=0 D Q ;
398 . W "NO PATIENTS RETURNED",!
399 E D ;
400 . D PARY^GPLXPATH("ZR") ; PRINT ARRAY
401 . W "COUNT=",ZR(0),!
402 Q
403 ;
404RPCGV(RTN,DFN,WHICH) ; RPC GET VARS
405 ; RETURNS IN RTN (PASSED BY REFERENCE) THE VARS AND VALUES
406 ; FOUND AT INARY RTN(X)="VAR^VALUE" RTN(0) IS THE COUNT
407 ; DFN IS THE PATIENT NUMBER.
408 ; WHICH IS "ALL","MEDS","VITALS","PROBLEMS","ALERTS","RESULTS"
409 ; OR OTHER SECTIONS AS THEY ARE ADDED
410 ; THIS IS MEANT TO BE AVAILABLE AS AN RPC
411 I '$D(RIMBASE) D ASETUP ; FOR COMMAND LINE CALLS
412 S ZVBASE=$NA(@RIMBASE@("VARS")) ; BASE OF VARIABLES
413 S RTN(0)=0 ; DEFAULT NOTHING IS RETURNED
414 N ZZGI
415 I WHICH="ALL" D ; VARIABLES FROM ALL SECTIONS
416 . F ZZGI="HEADER","PROBLEMS","VITALS","MEDS","ALERTS","RESULTS" D ;
417 . . D ZGVWRK(ZZGI) ; DO EACH SECTION
418 E D ZGVWRK(WHICH) ; ONLY ONE SECTION ASKED FOR
419 Q
420 ;
421ZGVWRK(ZWHICH) ; DO ONE SECTION FOR RPCGV
422 ;
423 N ZZGN ; NAME FOR SECTION VARIABLES
424 S ZZGN=$NA(@ZVBASE@(DFN,ZWHICH)) ; BASE OF VARS FOR SECTION
425 I '$D(@ZZGN@(0)) Q ; NO VARS FOR THIS SECTION
426 E D ; VARS EXIST
427 . N ZGVI
428 . F ZGVI=1:1:@ZZGN@(0) D ; FOR EACH MULTIPLE IN SECTION
429 . . K ZZGA N ZZGA ; TEMP ARRAY FOR SECTION VARS
430 . . K ZZGN2 N ZZGN2 ; NAME FOR MULTIPLE
431 . . S ZZGN2=$NA(@ZZGN@(ZGVI))
432 . . W ZZGN2,!,$O(@ZZGN2@("")),!
433 . . D H2ARY^GPLXPATH("ZZGA",ZZGN2,ZGVI) ; CONVERT HASH TO ARRAY
434 . . ; D PARY^GPLXPATH("ZZGA")
435 . . D PUSHA^GPLXPATH("RTN","ZZGA") ; PUSH ARRAY INTO RETURN
436 Q
437 ;
438DPATV(DFN,IWHICH) ; DISPLAY VARS FOR PATIENT DFN THAT ARE MAINTAINED IN GPLRIM
439 ; ALONG WITH SAMPLE VALUES.
440 ; IWHICH IS "ALL","MEDS","VITALS","PROBLEMS","ALERTS","RESULTS","HEADER"
441 N GTMP
442 I '$D(^TMP("GPLRIM","ATTR",DFN)) D ; RIM VARS NOT PRESENT
443 . D ANALYZE(DFN,1) ; REFRESH THE RIM VARIABLES
444 I '$D(IWHICH) S IWHICH="ALL"
445 D RPCGV(.GTMP,DFN,IWHICH)
446 D PARY^GPLXPATH("GTMP")
447 Q
448 ;
449RIM2RNF(R2RTN,DFN,RWHICH) ; CONVERTS RIM VARIABLES TO RNF2 FORMAT
450 ; RETURN IN R2RTN, WHICH IS PASSED BY NAME
451 ; RWHICH IS RIM SECTION TO RETURN, DEFAULTS TO "ALL"
452 ;
453 I '$D(RWHICH) S RWHICH="ALL"
454 ;N R2TMP
455 I '$D(^TMP("GPLRIM","ATTR",DFN)) D ; RIM VARS NOT PRESENT
456 . D ANALYZE(DFN,1) ; REFRESH THE RIM VARIABLES
457 D RPCGV(.R2TMP,DFN,RWHICH) ; RETRIEVE ALL THE VARIABLES I AN ARRAY
458 N R2I,R2J,R2X,R2X1,R2X2,R2Y,R2Z
459 F R2I=1:1:R2TMP(0) D ; FOR EVERY LINE OF THE ARRAY
460 . S R2X=$P(R2TMP(R2I),"^",1) ; OCCURANCE
461 . S R2Y=$P(R2TMP(R2I),"^",2) ; VARIABLE NAME
462 . I $L(R2Y)<4 Q ; SKIP SHORT VARIABLES (THEY ARE FOR DEBUGGING)
463 . S R2Z=$P(R2TMP(R2I),"^",3) ; VALUE
464 . I R2X[";" D ; THERES MULTIPLES
465 . . S R2X1=$P(R2X,";",1) ; FIRST INDEX
466 . . S R2X2=$P(R2X,";",2) ; SECOND INDEX
467 . . S R2J=R2Y_"["_R2X2_"]" ; BUILD THE VARIABLE NAME
468 . . S @R2RTN@("F",R2J,1)="" ; PUT VARIABLE NAME IN FIELD MAP
469 . . S @R2RTN@("V",R2X1,R2J,1)=R2Z ; PUT THE VALUE IN THE ARRAY
470 . E D ; NO SUB-MULTIPLES
471 . . S @R2RTN@("F",R2Y,1)="" ; PUT VARIABLE NAME IN FIELD MAP
472 . . S @R2RTN@("V",R2X,R2Y,1)=R2Z ; PUT THE VALUE IN THE ARRAY
473 Q
474 ;
475RIM2CSV(DFN) ; WRITE THE RIM VARIABLES FOR A PATIENT TO A CSV FILE
476 ;
477 N R2CTMP,R2CARY
478 D RIM2RNF("R2CTMP",DFN) ; CONVERT VARIABLES TO RNF FORMAT
479 D RNF2CSV^C0CRNF("R2CARY","R2CTMP","NV") ; CONVERT RNF TO CSV FORMAT
480 D FILEOUT^C0CRNF("R2CARY","VARS-"_DFN_".csv")
481 Q
482 ;
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