PROGRAM FRAW2 IMPLICIT NONE C C raw2hycom - Usage: raw2hycom fraw.a idm jdm [spval] [i1 j1] fhycom.a C C Outputs a HYCOM ".a" copy of a raw (no control words, no padding) file. C C The input array is (1:idm,1:jdm), output is (i1:idm,j1:jdm) C C fraw.a is assumed to contain idm*jdm 32-bit IEEE real values for C each array, in standard f77 element order, with no control words, C no padding, and data voids indicated by spval (default 2.0**100). C C fhycom.a will contain (idm-i1+1)*(jdm-i1+1) 32-bit IEEE real values C for each array, in standard f77 element order, followed by padding C to a multiple of 4096 32-bit words, but otherwise with no control C bytes/words, and 2.0**100 indicating a data void. C C this version for "serial" Unix systems. C C Alan J. Wallcraft, Naval Research Laboratory, November 2001. C REAL*4, ALLOCATABLE :: A(:,:) REAL*4 :: PAD(4096) INTEGER IOS INTEGER IARGC INTEGER NARG CHARACTER*240 CARG C LOGICAL LSPVAL REAL*4 SPVAL INTEGER IDM,JDM,I1,J1,NPAD CHARACTER*240 CFILE1,CFILEO C C READ ARGUMENTS. C NARG = IARGC() C IF (NARG.EQ.7) THEN CALL GETARG(1,CFILE1) CALL GETARG(2,CARG) READ(CARG,*) IDM CALL GETARG(3,CARG) READ(CARG,*) JDM LSPVAL = .TRUE. CALL GETARG(4,CARG) READ(CARG,*) SPVAL CALL GETARG(5,CARG) READ(CARG,*) I1 CALL GETARG(6,CARG) READ(CARG,*) J1 CALL GETARG(7,CFILEO) ELSEIF (NARG.EQ.6) THEN CALL GETARG(1,CFILE1) CALL GETARG(2,CARG) READ(CARG,*) IDM CALL GETARG(3,CARG) READ(CARG,*) JDM LSPVAL = .FALSE. CALL GETARG(4,CARG) READ(CARG,*) I1 CALL GETARG(5,CARG) READ(CARG,*) J1 CALL GETARG(6,CFILEO) ELSEIF (NARG.EQ.5) THEN CALL GETARG(1,CFILE1) CALL GETARG(2,CARG) READ(CARG,*) IDM CALL GETARG(3,CARG) READ(CARG,*) JDM LSPVAL = .TRUE. CALL GETARG(4,CARG) READ(CARG,*) SPVAL I1 = 1 J1 = 1 CALL GETARG(5,CFILEO) ELSEIF (NARG.EQ.4) THEN CALL GETARG(1,CFILE1) CALL GETARG(2,CARG) READ(CARG,*) IDM CALL GETARG(3,CARG) READ(CARG,*) JDM LSPVAL = .FALSE. I1 = 1 J1 = 1 CALL GETARG(4,CFILEO) ELSE WRITE(6,*) & 'Usage: raw2hycom fraw.a idm jdm [spval] [i1 j1] fhycom.a' CALL EXIT(1) ENDIF C NPAD = 4096 - MOD((IDM-I1+1)*(JDM-J1+1),4096) IF (NPAD.EQ.4096) THEN NPAD = 0 ENDIF C ALLOCATE( A(IDM,JDM), STAT=IOS ) IF (IOS.NE.0) THEN WRITE(6,*) 'Error in raw2hycom: could not allocate ', + IDM*JDM,' words' CALL EXIT(2) ENDIF C CALL RAW(A,IDM,JDM,PAD,NPAD, I1,J1, LSPVAL,SPVAL, CFILE1,CFILEO) CALL EXIT(0) END SUBROUTINE RAW(A,IDM,JDM,PAD,NPAD, I1,J1, & LSPVAL,SPVAL, CFILE1,CFILEO) IMPLICIT NONE C REAL*4 SPVALH PARAMETER (SPVALH=2.0**100) C CHARACTER*240 CFILE1,CFILEO LOGICAL LSPVAL INTEGER IDM,JDM,NPAD,I1,J1 REAL*4 SPVAL REAL*4 A(IDM,JDM),PAD(NPAD) C C MOST OF WORK IS DONE HERE. C CHARACTER*18 CASN INTEGER I,J,K,IOS,NRECL,MRECL REAL*4 AMN,AMX #ifdef CRAY INTEGER*8 IU8,IOS8 #endif C IF (.NOT.LSPVAL) THEN SPVAL = SPVALH ENDIF C INQUIRE( IOLENGTH=MRECL) A IF (NPAD.EQ.0) THEN INQUIRE( IOLENGTH=NRECL) A(I1:IDM,J1:JDM) ELSE INQUIRE( IOLENGTH=NRECL) A(I1:IDM,J1:JDM),PAD PAD(:) = SPVALH ENDIF #ifdef CRAY #ifdef t3e IF (MOD(NRECL,4096).EQ.0) THEN WRITE(CASN,8000) NRECL/4096 8000 FORMAT('-F cachea:',I4.4,':1:0') IU8 = 11 CALL ASNUNIT(IU8,CASN,IOS8) IF (IOS8.NE.0) THEN write(6,*) 'Error: can''t asnunit 11' write(6,*) 'ios = ',ios8 write(6,*) 'casn = ',casn CALL EXIT(5) ENDIF ENDIF IF (MOD(MRECL,4096).EQ.0) THEN IU8 = 21 CALL ASNUNIT(IU8,CASN,IOS8) IF (IOS8.NE.0) THEN write(6,*) 'Error: can''t asnunit 21' write(6,*) 'ios = ',ios8 write(6,*) 'casn = ',casn CALL EXIT(5) ENDIF ENDIF #else CALL ASNUNIT(11,'-F syscall -N ieee',IOS) IF (IOS.NE.0) THEN write(6,*) 'Error: can''t asnunit 11' write(6,*) 'ios = ',ios CALL EXIT(5) ENDIF CALL ASNUNIT(21,'-F syscall -N ieee',IOS) IF (IOS.NE.0) THEN write(6,*) 'Error: can''t asnunit 21' write(6,*) 'ios = ',ios CALL EXIT(5) ENDIF #endif #endif OPEN(UNIT=11, FILE=CFILEO, FORM='UNFORMATTED', STATUS='NEW', + ACCESS='DIRECT', RECL=NRECL, IOSTAT=IOS) IF (IOS.NE.0) THEN write(6,*) 'Error: can''t open ',TRIM(CFILEO) write(6,*) 'ios = ',ios write(6,*) 'nrecl = ',nrecl CALL EXIT(3) ENDIF OPEN(UNIT=21, FILE=CFILE1, FORM='UNFORMATTED', STATUS='OLD', + ACCESS='DIRECT', RECL=MRECL, IOSTAT=IOS) IF (IOS.NE.0) THEN write(6,*) 'Error: can''t open ',TRIM(CFILE1) write(6,*) 'ios = ',ios write(6,*) 'nrecl = ',nrecl CALL EXIT(3) ENDIF C DO 110 K= 1,HUGE(K) READ(21,REC=K,IOSTAT=IOS) A #ifdef ENDIAN_IO CALL ENDIAN_SWAP(A,IDM*JDM) #endif IF (IOS.NE.0) THEN IF (K.EQ.1) THEN WRITE(6,*) 'can''t read ',TRIM(CFILE1) CALL EXIT(4) ELSE GOTO 1110 ENDIF ENDIF AMN = SPVALH AMX = -SPVALH DO 210 J= J1,JDM DO 212 I= I1,IDM IF (A(I,J).GE.-HUGE(AMN) .AND. & A(I,J).LE. HUGE(AMN) ) THEN IF (A(I,J).NE.SPVAL) THEN AMN = MIN( AMN, A(I,J) ) AMX = MAX( AMX, A(I,J) ) ELSEIF (LSPVAL) THEN A(I,J) = SPVALH !hycom data void values ENDIF ELSE A(I,J) = SPVALH !replace NaN or -Inf or +Inf with data void ENDIF 212 CONTINUE 210 CONTINUE #ifdef ENDIAN_IO CALL ENDIAN_SWAP(A,IDM*JDM) #endif IF (NPAD.EQ.0) THEN WRITE(11,REC=K,IOSTAT=IOS) A(I1:IDM,J1:JDM) ELSE WRITE(11,REC=K,IOSTAT=IOS) A(I1:IDM,J1:JDM),PAD ENDIF WRITE(6,'(a,1p2g16.8)') & 'min, max = ',AMN,AMX 110 CONTINUE 1110 CONTINUE WRITE(6,*) WRITE(6,*) K-1,' FIELDS PROCESSED' WRITE(6,*) C CLOSE(11) CLOSE(21) C RETURN END